Sterling Memorial Library

2026

Wood nanotechnologies

Hu, L.

MRS Bulletin, 2026, 1-4


Oil-impregnated densified wood veneer with high electrical insulation enabled by nanosized oil channels

Wu, M., Xu, Y., Zhang, Q., Brozena, A., Mao, Y., Liu, Y., Xu, L., Tejaswi, S., Zhang, Y., Zhao, X., Zhang, K. C., Ramakrishnan, K., Wang, O., Nelson, J. K., Bahadur, V., Zhu, J. Y., Hebner R. Hu, L.

Science Advances, 2026, 12, eaed5744.


A molecular pathway to corrosion-resistant printable copper

Zhang, J., Zhang, Q., Feng, Q., Sun, X., Xu, L., Wang, Z., Zheng, X., Yang, L., Khuje, S., Zheng, H., Hu, L., Ren, S.

Science, 2026, 392, 6799, 766-770.


Methane pyrolysis-enabled production of high-value carbon fibres

Li, T., Wang, C., Wood, C. A., Zeng, K., Dong, Q., Gonzalez, M., Jony, B., Cheng, S., Zhao, X., Brozena, A. H., Gupta, K., Arias-Monje, P. J., Zhang, X., Mintz, K. J., Zong, H., Wang, S., Wang, X., Gu, H., Liu, D., Liu, P., Kumar, S., Wang, C., Hu, L.

Nature Sustainability, 2026, 9, 890–900


Electrical breakdown analysis of emerging oil–paper insulation systems

Xu, Y., Tejaswi, S., Davey, K., Zhang, Q., Bahadur, V., Zhu, J., Hebner, R. Han Z., Lin, F., Hu, L.

High Voltage, 2026, 00: 1-10.


Salt diffusivity in a Cu-cellulose nanofiber based, multi-component electrolyte assessed using restricted diffusion, molecular dynamics, and nuclear magnetic resonance

Duncan, K., Wu, Q., Garaga, M., McKee, M., Xu, L., Zheng, X., Asha, A. S., Qi, Y., Greenbaum, S., Hu, L.

Journal of The Electrochemical Society, 2026, 173 040501


Critical properties enhancement of oil-paper transformer insulation with turbostratic boron nitride

Xu, Y.; Zhang, Q.; Soori, T.; Zhu, J. Y.; Nelson, J. K.; Hu, L.; Bahadur, V.; Hebner, R. 

Composites Communications, 2026, 61, 102673.


Molecular engineering of cellulose and its applications

Xu, L.; Mao, Y.; Hu, L. 

Nature Reviews Bioengineering, 2026, 4, 490-502


Electrified vapour deposition at ultrahigh temperature and atmospheric pressure for nanomaterials synthesis

Wang, X.; Liu, N.; Huang, Z.; Yang, J.; Chen, G.; Li, B.; Xie, T.; Overa, S.; Brozena, A. H.; Li, T.; Mumtaz, F.; Zhang, B.; Lin, Y.; Li, M.; Mei, B.; Li, S.; Huang, J.; Huang, J.; Jiao, F.; Gong, C.; Wang, G.; Chi, M.; Takeuchi, I.; Ju, Y.; Hu, L.

Nature Synthesis,  2026, 5, 14-26

Article

Supporting Information

Movie

News: Making complex nanomaterials with electrified atomic vapor

2025

Molybdenum-enriched Mo0.5Ru0.5O2 nanoparticles for efficient and stable oxygen evolution reaction

Zeng, K.; Kim, I. J.; Liu, F.; Gao, P.; Yan, L.; Sivakumar, B. M.; Wietsma, T. W.; Du, Y.; Zhang, Q.; Yang, C.; Hu, Y.; Li, T.; Hu, S.; Shao, Y.; Hu, L.

Advanced Materials, 2025, e20210.


Membrane reactors for ammonia production: Insights into ammonia-separative membranes, synthesis catalysts, and their integration

Yarema, G.; Yang, J.; Warty, A.; Liu, Z.; Hu, L.; Liu, D.

ACS Nano, 2025, 19, 46, 39535–39563.


Pyrolyzed preceramic precursors to compositionally complex ceramics

Khuje, S.; Sun, J.; Yang, C.; Wang, Z.; Zhu, L.; Li, T.; Valentino, G.; Ku, N.; Bujanda, A.; Yu, J.; Moore, T.; Woehl, T. J.; Hu, L.; Ren, S.

Matter, 2025, 8(11), 102285.


Element-specific local chemical order of high-entropy nanoalloys

Morris, D.; Li, B.; Yao, Y.; Huang, Z.; Shahbazian-Yassar, R.; Wang, G.; Hu, L.; Zhang, P.

ACS Nano, 2025, 19, 29, 26752–26760.


Selective electrified polyethylene upcycling by pore-modulated pyrolysis

Yang, J.; Dong, Q.; Zhang, C.; Zhang, W.; Miscall, J.; Brozena, A. H.; Chen, J.; Liu, N.; Li, T.; Liu, F.; Nascimento, C. A.; Dantas, B.; Zhang, B.; Mumtaz, F.; Liu, Z.; Liu, S.; Du, Y.; Wang, Z.; Pang, Z.; Liu, D.; Huang, J.; Lima, F. V.; Pan, X.; Ju, Y.; Fu, K.; Hu, S.;  Beckham, G. T.; Hu, L.

Nature Chemical Engineering, 2025, 2, 424–435.


Boron nitride enhanced electric insulation paper for extending transformer thermal life

Xu, Y.; Soori, T.; Zhang, Q.; Zhu, J. Y.; Nelson, J. K.; Hu, L.; Bahadur, V.; Hebner, R.

Materials & Design, 2025, 254, 114112.


Phase changes of multielemental alloy nanoparticles at elevated temperatures

Huang, Z.; Li, T.; Fang, Y.; Smith, J.; Li, B.; Brozena, A.; Dong, Q.; Zhang, Q.; Du, Y.; Mao, S. X.; Wang, G.; Chi, M.; Hu, L.

ACS Nano, 2025, 19(13), 13457–13465.


Stretchable, breathable, wearable batteries using a holey design

Xu, L.; Chen, Q.; Pichchamuttu, S. V.; Wu, L.; Pate, E.; Wu, C.; Li, T.; Zheng, X.; Yang, C.; Jin, K.; Liu, P.; Li, T.; Hu, L.

Matter, 2025, 8(3), 101959.


Solar evaporation and clean water

Ho, G. W.; Yamauchi, Y.; Hu, L.; Mi, B.; Xu, N.; Zhu, J.; Wang, P.

Nature Water, 2025, 3,131–134.

2024

3775-year-old wood burial supports “wood vaulting” as a durable carbon removal method

Zeng, N.; Zhao, X.; Poisson, G.; Clifford, B.; Liu, Y.; Liu, H.; Meng, T.; Picard, L.; Zeng-Mariotti, E.; Zaitchik, B.; Hu, L.

Science, 2024, 385(6716), 1454-1459.


Kilogram-scale production of strong and smart cellulosic fibers featuring unidirectional fibril alignment

Li, J.; Chen, C.; Chen, Q.; Li, Z.; Xiao, S.; Gao, J.; He, S.; Lin, Z.; Tang, H.; Li, T.; Hu, L.

National Science Review, 2024, 11(10), nwae270.


Genome-edited trees for high-performance engineered wood

Liu, Y.; Li, G.; Mao, Y.; Gao, Y.; Zhao, M.; Brozena, A.; Wang, D.; von Keitz, S.; Meng, T.; Kim, H.; Pan, X.; Qi, Y.; Hu, L.

Matter, 2024, 7(10), 3658-3671.


Ion-chelated porous chitosan nanocrystal for highly efficient postharvest preservation

Ma, P.; Jia, X.; Zhang, X.; Li, Y.; He, Y.; Li, T.; Wu, C.; Joo, Y. H.; Lee, S. H.; Meng, T.; Brozena, A.; Li, S.; Wang, Q.; Wei, C.; Briber, R. M.; Mao, Y.; Hu, L.

Matter, 2024, 7(7), 2567-2580.


Modeling the impact of high thermal conductivity paper on the performance and life of power transformers

Bilyaz, S.; Bhati, A.; Hamalian, M.; Maynor, K.; Soori, T.; Gattozzi, A.; Penney, C.; Weeks, D.; Xu, Y.; Hu, L.; Zhu, J. Y.; Nelson, J. K.; Hebner, R.; Bahadur, V.

Heliyon, 2024, 10(6), e27783.


Dissimilar material joining of densified superwood to aluminum by adhesive bonding

Hartsfield, M.; Chen, B.; Liu, Y.; He, S.; Leiste, U. H.; Fourney, W. L.; Li, T.; Hu, L.; Luo, A. A.

The International Journal of Advanced Manufacturing Technology, 2024, 131, 425-436.


Machine intelligence-accelerated discovery of all-natural plastic substitutes

Chen, T.; Pang, Z.; He, S.; Li, Y.; Shrestha, S.; Little, J. M.; Yang, H.; Chung, T.-C.; Sun, J.; Whitley, H. C.; Lee, I.-C.; Woehl, T. J.; Li, T.; Hu, L.; Chen, P.-Y.

Nature Nanotechnology, 2024, 19(6), 782-791.


Damage-tolerant wood layers for corrosion protection of metal structures

Yu, S.; Liu, Y.; Chen, Q.; Yu, X.; Hyun, G.; Wang, S.; Ye, Y.; Feng, J.; Chen, Z.; Jiang, F.; King, J. A.; Li, T.; Hu, L.; Liu, P.

Nano Letters, 2024, 24(1), 245-253.


Flash heating process for efficient meat preservation

Mao, Y.; Ma, P.; Li, T.; Liu, H.; Zhao, X.; Liu, S.; Jia, X.; Rahaman, S. O.; Wang, X.; Zhao, M.; Chen, G.; Xie, H.; Brozena, A. H.; Zhou, B.; Luo, Y.; Tarté, R.; Wei, C.-I.; Wang, Q.; Briber, R. M.; Hu, L.

Nature Communications, 2024, 15, Article 3893.


Tailoring local chemical ordering via elemental tuning in high-entropy alloys

Huang, Z.; Li, T.; Li, B.; Dong, Q.; Smith, J.; Li, S.; Xu, L.; Wang, G.; Chi, M.; Hu, L.

Journal of the American Chemical Society, 2024, 146(3), 2167-2173.

2023

The critical roles of water in the processing, structure, and properties of nanocellulose

Jing, S.; Wu, L.; Siciliano, A.; Chen, C.; Li, T.; Hu, L.

ACS Nano, 2023, 17, 22196.


In situ lignin adhesion for high-performance bamboo composites

Meng, T.; Ding, Y.; Liu, Y.; Xu L.; Mao, Y.; Gelfond, J.; Li, S.; Li, Z.; Salipante, P.; Kim, H.; Zhu, J.; Pan, X.; Hu, L.

Nano letters, 2023, 23, 8411.


Spatially separated crystallization for selective lithium extraction from saline water

Chen, X.; Yang, M.; Zheng, S.; Temprano-Coleto, F.; Dong, Q.; Cheng, G.; Yao, N.; Stone, H.; Hu, L.; Ren, Z.

Nature Water, 2023, 1, 808.


Engineering wood: sustainable technologies and applications

He, S.; Zhao, X.; Wang, E.; Chen, G.; Che, P.; Hu, L.

Annual Review of Materials Research, 2023, 53, 195.


Highly electrically conductive biomass-derived carbon fibers for permanent carbon sequestration

Gelfond, J.; Meng, T.; Li, S.; Li, T.; Hu, L.

Sustainable Materials and Technologies, 2023, 35, e00573.


A scalable, high-porosity wood for sound absorption and thermal insulation

Zhao, X.; Liu, Y.; Zhao, L.; Yazdkhasti A.; Mao, Y.; Siciliano, A.; Dai, J.; Jing, S.; Xie, H.; Li, Z.; He, S.; Clifford, B.; Li, J.; Che, G.; Wang, E.; Desjarlais, A.; Saloni, D.; Yu, M.; Kosny, J. Zhu, Y. Gong, A.; Hu, L.

Nature Sustainability, 2023, 6, 306.


Highly stable, antiviral, antibacterial cotton textiles via molecular engineering

Qian, J.; Dong, Q.; Chun, K.; Zhu, D.; Zhang, X.; Mao, Y.; Culver, J. Tai, S.; German, J.; Dan, D.; Miller, J. Wang, L. Wu, T.; Li, T.; Brozena, A.; Briber, R.; Milton, D.; Bentleu, W.; Hu, L.

Nature Nanotechnology, 2023, 18, 168.


Nanocellulose-carboxymethylcellulose electrolyte for stable, high-rate Zinc-ion batteries

Xu, L.; Meng, T.; Zheng, X.; Li, T.; Brozena, A.; Mao, Y.; Zhang, Q.; Clifford, B.; Rao, J.; Hu, L.

Advanced Functional Materials, 2023, 33, 27.


Stability of high-entropy alloys under electrocatalytic conditions

Kormanyos, A.; Dong, Q.; Xiao, B.; Li, T.; Savan, A.; Jenewein, K.; Priamushko, T.; Korner, A.; Bohm, T.; Hutzler, A.; Hu, L.; Ludwig, A.; Cherevko, S.

iScience, 2023, 26, 107775.


A stable atmospheric pressure plasma for extreme-temperature synthesis

Xie, H.; Liu, N.; Zhang, Q.; Zhong, H.; Guo, L.; Zhao, X.; Li, D.; Liu, S.; Huang, Z.; Lele, A.; Brozena, A.; Wang, X.; Song, K.; Chen, S.; Yao, Y.; Chi, M.; Xiong, W.; Rao, J.; Zhao, M.; Shneider, M.; Luo, J.; Zhao, J.; Ju, Y.; Hu, L.

Nature, 2023, 623, 964.


Three-dimensional atomic structure and local chemical order in medium- and high-entropy nanoalloys

Moniri, S.; Yang, Y.; Ding, J.; Yuan, Y.; Zhou, J.; Yang, L.; Zhu, F.; Liao, Y.; Yao, Y.; Hu, L; Ercius, P.; Miao, J.

Nature, 2023, 624, 564.


Depolymerization of plastics via electrified spatiotemporal heating

Dong, Q.; Dilip Lele, A.; Zhao, X.; Li, S.; Cheng, S.; Wang, Y.; Cui, M.; Guo, M.; Brozena, A.H.; Lin, Y.; Li, T.; Xu, L.; Qi, A.; Kevrekidis, I.; Mei, J.; Pan, X.; Liu, D.; Ju, Y.; Hu, L.

Nature, 2023, 616, 488.


Highly selective electrochemical nitrate to ammonia conversion by dispersed Ru in a multielement alloy catalyst

Yang, M.; Li, B.; Li, S.; Dong, Q.; Huang, Z.; Zheng, S.; Fang, Y.; Zhou, G.; Chen, X.; Zhu, X.; Li, T.; Chi, M.; Wang, G.; Hu, L; Ren, Z.

Nano Letters, 2023, 23, 7733.


Direct and rapid high‐temperature upcycling of degraded graphite

Li, T.; Tao, L.; Xu, L.; Meng, T.; Clifford, B.; Li, S.; Zhao, X.; Rao, J.; Lin, F.; Hu, L.

Advanced Functional Materials, 2023, 2302951.


Synthesizing carbon-supported, high-loading, ultra-small Pt3Ni nanoparticles via tuning the surface electrostatic effect

Li, S.; Xie, H. Dong, Q.; Jing, S.; Li, T.; Xu, L.; Hu, L.

Small Structures, 2023, 4, 2200176.


Sustainable electronic textiles towards scalable commercialization

Shi, H.H.; Pan, Y.; Xu, L.; Feng, X.; Wang, W.; Potluri, P.; Hu, L.; Hasan, T.; Huang, Y.Y.S.

Nature Materials, 2023, 1-10.

2022

Lightweight, thermally insulating, fire-proof graphite-cellulose foam

Chen, C.; Zhou, Y.; Xie, W.; Meng, T.; Zhao, X.; Pang, Z.; Chen, Q.; Liu, D.; Wang, R.; Yang, V.; Zhang, H.; Xie, H.; Leiste, U.; Fourney, W.; He, S.; Cai, Z.; Ma, Z.; Li, T.; Hu, L.

Advanced Functional Materials, 2022, 33, 2204219.


A low-corrosivity structural timber

Yu, S.; Liu, Y.; Chen, C.; Feng, S.; Siciliano, A.P.; Hu, L.; Liu, P.

Cell Reports Physical Science, 2022, 3, 100921.


Toward stretchable batteries: 3D-printed deformable electrodes and separator enabled by nanocellulose

Qian, J.; Chen, Q.; Hong, M.; Xie, W.; Jing, S.; Bao, Y.; Chen, G.; Pang, Z.; Hu, L; Li, T.

Materials Today, 2022, 54, 18.


A high-performance hydroxide exchange membrane enabled by Cu2+-crosslinked chitosan

Wu, M.; Zhang, X.; Zhao, Y.; Yang, C.; Jing, S.; Wu, Q.; Brozena, A.; Miller, J.; Libretto, N.; Wu, T.; Bhattacharyya, S.; Garaga, M.; Zhang, Y.; Qi, Y.; Greenbaum, S.; Briber, R.; Yang, Y. Hu, L.

Nature Nanotechnology, 2022, 17, 629.


Current international research into cellulose as a functional nanomaterial for advanced applications

Eichhorn, S.; Etale, A.; Wang, J.; Berglund, L.A.; Li, Y.; Cai. Y.; Chen, C.; Cranston, E.D.; Johns, M.; Fang, Z.; Li, G.; Hu, L.; Khandelwal, M.; Lee, K.-Y.; Oksman, K.; Pinitsoontorn, S.; Quero, F.; Sebastian, A.; Titirici, M; Xu, Z; Vignolini, S; Frka-Petesic, B.

Journal of Materials Science, 2022, 57, 5697.


Sustainable high-strength macrofibres extracted from natural bamboo

Li, Z.; Chen, C.; Xie, H.; Yao, Y.; Zhang, X.; Brozena, A.; Li, J.; Ding, Y.; Zhao, X.; Hong, M; Qiao, H.; Smith, L.M.; Pan, X.; Briber, R.; Shi, S.; Hu, L.

Nature Sustainability, 2022, 5, 235.


Ultrahigh-temperature melt printing of multi-principal element alloys

Wang, X.; Zhao, Y.; Chen, G.; Zhao, X.; Liu, C.; Sridar, S.; Pizano, L.; Li, S.; Brozena, A.H.; Guo, M.; Zhang, H.; Wang, Y.; Xiong, W.; Hu, L.

Nature Communications, 2022, 13, 6724.


Rapid liquid-phase-assisted ultra-high temperature sintering of high-entropy ceramic composites

Xie, H.; Qin, M.; Hong, M.; Rao, J.; Guo, M.; Luo, J.; Hu, L.

Science Advances, 2022, 8, eabn8241.


Rapid pressureless sintering of glasses

Lin, Z.; Zhao, X.; Wang, C.; Dong, Q.; Qian, J.; Zhang, G.; Brozena, A.; Wang, X.; He, S.; Ping, W.; Chen, G.; Pei, Y.; Zheng, C.; Clifford, B.; Hong, M.; Wu, Y.; Yang, B.; Luo, J.; Albertus, P.; Hu, L.

Small, 2022, 18, 2107951.


Boron-nitride nanosheet-based thermal barrier coating for micro-combustor performance improvement

Yang, B.; Hu, L.; Ping, W.; Roy, R.; Gupta, A.K.

Journal of Energy Resources Technology, 2022, 144, 062106.


Target-sintering of single-phase bulk intermetallics via a fast-heating-induced rapid interdiffusion mechanism

Chen, G.; Wang, Y.; Wang, X.; Zhao, Y.; Dong, Q.; Hao, L.; Hong, M.; Guo, M.; Qiao, H.; Xiong, W.; Hu, L.

ACS Materials Letters, 2022, 4, 480.


Tantalum/Titanium oxide nanoparticles as radical scavengers for durable Platinum-group-metal free oxygen reduction catalysts

Xie, H.; Xie, X.; Hu, G.; Prabhakaran, V.; Saha, S.; Gonzalez-Lopez, L.; Phakatkar, A. H.; Hong, M.; Wu, M.; Shahbazian-Yassar, R.; Ramani, V.; Al-Sheikhly, M. I.; Jiang, D. E.; Shao, Y.; Hu, L.

Nature Energy, 2022, 7, 281.


High entropy nanoparticles: synthesis-structure-property relationships and data-driven accelerated discovery

Yao, Y.; Dong, Q.; Brozena, A.; Luo, J.; Miao, J.; Chi, M.; Wang, C.; Kevrekidis, I.; Ren, J.; Greeley, J.; Wang, G.; Anapolsky, A.; Hu, L.

Science, 2022, 376, eabn3102.


Programmable heating and quenching for efficient thermochemical synthesis

Dong, Q.; Yao, Y.; Cheng, S.; Alexopoulos, K.; Gao, J.; Srinivas, S.; Yang, Y.; Pei, Y.; Zheng, C.; Brozena, A.; Zhao, H.; Wang, X.; Toraman, H.; Yang, B.; Kevrekidis, I.; Ju, Y.; Vlachos, D.; Liu, D.; Hu, L.

Nature, 2022, 605, 470.


Multi-principal elemental intermetallic nanoparticles synthesized via a disorder-to-order transition

Cui, M.; Yang, C.; Hwang, S.; Yang, M.; Overa, S.; Dong, Q.; Yao, Y.; Brozena, A.H.; Cullen, D.A.; Chi, M.; Blum, T.F.; Morris, D.; Finfrock, Z.; Wang, X.; Zhang, P.; Goncharov, V.G.; Guo, X.; Luo, J.; Mo, Y.; Jiao, F.; Hu, L.

Science Advances, 2022, 8, eabm4322.


Rapid atomic ordering transformation toward intermetallic nanoparticles

Cui, M.; Yang, C.; Hwang, S.; Li, B.; Dong, Q.; Wu, M.; Xie, H.; Wang, X.; Wang, G.; Hu, L.

Nano Letters, 2022, 22, 255.


Ultrafast high-temperature sintering to avoid metal loss toward high-performance and scalable cermets

Guo, M.; Dong, Q.; Xie, H.; Wang, C.; Zhao, Y.; Wang, X.; Zhong, W.; Li, Z.; Wang, R.; Wang, Y.; Hao, L.; He, L.; Chen, G.; Xiong, W.; Zhao, J.; Hu, L.

Matter, 2022, 5, 594.


Interface engineering between multi-elemental alloy nanoparticles and carbon support toward stable catalysts

Li, T.; Dong, Q.; Huang, Z.; Wu, L.; Yao, Y.; Gao, J.; Wang, X.; Zhang, H.; Wang, D.; Li, T.; Shahbazian-Yassar, R.; Hu, L.

Advanced Materials, 2022, 34, 2106436.


Rapid synthesis of high-entropy oxide microparticles

Dong, Q., Hong, M.; Gao, J.; Li, T.; Cui, M.; Li, S.; Qiao, H.; Brozena, A.H.; Yao, Y.; Wang, X.; Chen, G.; Luo, J.; Hu, L.

Small, 2022, 18, 2104761.


A cellulose-derived supramolecule for fast ion transport

Dong, Q.; Zhang, X.; Qian, J.; He, S.; Mao, Y.; Brozena, A.; Zhang, Y.; Pollard, T.; Borodin, O.; Wang, Y.; Chava, B.; Das, S.; Zavalij, P.; Segre, C.; Zhu, D.; Xu, L.; Liang, Y.; Yao, Y.; Briber, R.; Li, T.; Hu, L.

Science Advances, 2022, 8, eadd2031.


Scalable dry-pressed electrodes based on holey graphene

Lin, Y.; Plaza-Rivera, C.; Hu, L.; Connell, J.

Accounts of Chemical Research, 2022, 55, 20, 3020–3031.


A sustainable chitosan-zinc electrolyte for high-rate zinc metal batteries

Wu, M.; Zhang, Y.; Xu, L.; Yang, C.; Hong, M.; Cui, M.; Clifford, B.; He, S.; Jing, S.; Yao, Y.; Hu, L.

Matter, 2022, 5, 1.


Charting sustainable batteries

Bauer, C.; Burkhardt, S.; Dasgupta, N.; Ellingsen, L.; Gaines, L.; Hao, H.; Hischier, R.; Hu, L.; Huang, Y.; Janek, J.; Liang, C.; Li, H.; Li, J.; Li, Y.; Lu, Y.; Luo, W.; Nazar, L.; Olivetti, E.; Peters, J.; Rupp, J.; Weil, M.; Whitacre, J.; Xu, S.

Nature Sustainability, 2022, 5, 176.

2021

Lightweight, strong, moldable wood via cell wall engineering as a sustainable structural material

Xiao, S.; Chen, C.; Xia, Q.; Liu, Y.; Yao, Y.; Chen, Q.; Hartsfield, M.; Brozena, A.; Tu, K.; Eichhorn, S.J.; Yao, Y.; Li, J.; Gan, W.; Shi, S.; Yang, V.; Ricco, M.; Zhu, J.; Burgert, I.; Luo, A.; Li, T.; Hu, L.

Science, 2021, 374(465), Cover.

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Scalable wood hydrogel membrane with nanoscale channels

Chen, G.; Li, T.; Chen, C.; Kong, W.; Jiao, M.; Jiang, B.; Xia, Q.; Liang, Z.; Liu, Y.; He, S.; Hu, L.

ACS Nano, 2021, 15, 11244.

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Sustainable off-grid desalination of hypersaline waters using Janus wood evaporators

Chen, X.; He, S.; Falinski, M.; Wang, Y.; Li, T.; Zheng, S.; Sun, D.; Dai, J.; Bian, Y.; Zhu, X.; Jiang, J.; Hu, L.; Ren, Z.

Energy & Environmental Science, 2021, 14, 5347.

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Wood ionic cable

Kong, W.; Chen, C.; Chen, G.; Wang, C.; Liu, D.; Das, S.; Chen, G.; Li, T.; Li, J.; Liu, Y.; Li, Z.; Clifford, B.; Hu, L.

Small, 2021, 17, 2008200.

 

Critical roles of pores and moisture in sustainable nanocellulose-based super-thermal insulators

Zhao, X.; Brozena A.H.; Hu, L.

Matter, 2021, 4, 769.

Supporting Information

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3D-printed, high-porosity, high-strength graphite aerogel

Liu, D.; Chen, C.; Zhou, Y.; Bao, Y.; Wang, R.; Liu, Y.; He, S.; Huang, H.; Zhang, C.; Foster, B.; Li, T.; Hu, L.

Small Methods, 2021, 5, 2001188.


A strong, biodegradable and recyclable lignocellulosic bioplastic

Xia, Q.; Chen, C.; Yao, Y.; Li, J.; He, S.; Zhou, Y.; Li, T.; Pan, X.; Yao, Y.; Hu, L.

Nature Sustainability, 2021, 4, 627.

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A bio-inspired, hierarchically porous structure with decoupled fluidic transportation and evaporative pathway toward high-performance evaporation

Li, J.; Chen, C.; Gan, W.; Li, Z.; Xie, H.; Jiao, M.; Xiao, S.; Tang, H.; Hu, L.

Journal of Materials Chemistry A, 2021, 9, 9745.

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Strong, hydrostable, and degradable straws based on cellulose–lignin reinforced composites

Wang, X.; Xia, Q.; Jing, S.; Li, C.; Chen, Q.; Chen, B.; Pang, Z.; Jiang, B.; Gan, W.; Chen, G.; Cui, M.; Hu, L.; Li, T.

Small, 2021, 17, 2008011.

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Recent advances in functional materials through cellulose nanofiber templating

Lamm, M.E.; Li, K.; Qian, J.; Wang, L.; Lavoine, N.; Newman, R.; Gardner, D.J.; Li, T.; Hu, L.; Ragauskas, A.J.; Tienakph, H.; Kunc, V.; Ozcan, S.

Advanced Materials, 2021, 33, 2005538.

Supporting Information

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Scalable synthesis of high-entropy alloy nanoparticles by microwave heating

Qiao, H.; Saray, M.T.; Wang, X.; Xu, S.; Chen, G.; Huang, Z.; Chen, C.; Zhong, G.; Dong, Q.; Hong, M.; Xie, H.; Shahbazian-Yassar, R.; Hu, L.

ACS Nano, 2021, 15, 14928.

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Tailoring the local environment of platinum in single-atom Pt1/CeO2 catalysts for robust low-temperature CO oxidation

Jiang, D.; Yao, Y.; Li, T.; Wan, G.; Pereira-Hernandez, X.I.; Lu, Y.; Tian, J.; Khivantsev, K.; Engelhard, M.H.; Sun, C.; Garcia-Vargas, C.E.; Hoffman, A.S.; Bare, S.R.; Datye, A.K.; Hu, L.; Wang, Y.

Angewandte Chemie, 2021, 60(2).

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3D printed graphene-based 3000 K probe

Liang, Z.; Yao, Y.; Jiang, B.; Wang, X.; Xie, H.; Jiao, M.; Liang, C.; Qiao, Y.; Kline, D.; Zachariah, M.R.; Hu, L.

Advanced Functional Materials, 2021, 31, 2102994.

Supporting Information

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Continuous fly-through high-temperature synthesis of nanocatalysts

Qiao, Y.; Chen, C.; Liu, Y.; Liu, Y.; Dong, Q.; Yao, Y.; Wang, X.; Shao, Y.; Wang, C.; Hu, L.

Nano Letters, 2021, 21, 4517.

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A high-entropy phosphate catalyst for oxygen evolution reaction

Qiao, H.; Wang, X.; Dong, Q.; Zheng, H.; Chen, G.; Hong, M.; Yang, C.; Wu, M.; He, K.; Hu, L.

Nano Energy, 2021, 86, 106029.


Extreme mixing in nanoscale transition metal alloys

Yao, Y.; Huang, Z.; Hughes, L.A.; Gao, J.; Li, T.; Morris, D.; Zeltmann, S.C.; Savitzky, B.H.; Ophus, C.; Finfrock, Y.Z.; Dong, Q.; Jiao, M.; Mao, Y.; Chi, M.; Zhang, P.; Li, J.; Minor, A.M.; Shahbazian-Yassar, R.; Hu, L.

Matter, 2021, 4, 1.

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Carbon-supported high-entropy oxide nanoparticles as stable electrocatalysts for oxygen reduction reactions

Li, T.; Yao, Y.; Ko, B.H.; Huang, Z.; Dong, Q.; Gao, J.; Chen, W.; Li, J.; Li, S.; Wang, X.; Yassar, R.S.; Jiao, F.; Hu, L.

Advanced Functional Materials, 2021, 31, 2010561.

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Rapid synthesis and sintering of metals from powders

Wang, C.; Zhong, W.; Ping, W.; Lin, Z.; Wang, R.; Dai, J.; Guo, M.; Xiong, W.; Zhao, J.; Hu, L.

Advanced Science, 2021, 8, 2004229.

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Rapid, universal surface engineering of carbon materials via microwave-induced carbothermal shock

Zhong, G.; Dong, Q.; Hu, L.

Advanced Functional Materials, 2021, 31, 2010968.

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Denary oxide nanoparticles as highly stable catalysts for methane combustion

Li, T.; Yao, Y.; Huang, Z.; Xie, P.; Liu, Z.; Yang, M.; Gao, J.; Zeng, K.; Brozena, A.H.; Pastel, G.; Jiao, M.; Dong, Q.; Dai, J.; Li, S.; Zong, H.; Chi, M.; Luo, J.; Mo, Y.; Wang, G.; Wang, C.; Yassar, R.S.; Hu, L.

Nature Catalysis, 2021, 4, 62.

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Copper-coordinated cellulose ion conductors for solid-state batteries

Yang, C.; Wu, Q.; Xie, W.; Zhang, X.; Brozena, A.; Zheng, J.; Garage, M.N.; Ko, B.; Mao, Y.; He, S.; Gao, Y.; Wang, P.; Tyagi, M.; Jiao, F.; Briber, R.; Albertus, P.; Wang, C.; Greenbaum, S.; Hu, Y.; Isogai, A.; Winter, M.; Xu, K.; Qi, Y.; Hu, L.

Nature, 2021, 598, 590.

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Ultrafast sintering of solid-state electrolytes with volatile fillers

Hong, M.; Dong, Q.; Xie, H.; Clifford, B.; Qian, J.; Wang, X.; Luo, J.; Hu, L.

ACS Energy Letters, 2021, 6, 3753.

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High-temperature ultrafast sintering: exploiting a new kinetic region to fabricate porous solid-state electrolyte scaffolds

Wang, R.; Dong, Q.; Wang, C.; Gao, J.; Xie, H.; Guo, M.; Ping, W.; Wang, X.; Luo, J.; Hu, L.

Advanced Materials, 2021, 33, 2100726.

Supporting Information

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Ion-conducting, electron-blocking layer for high-performance solid electrolytes

Hitz, E.; Xie, H.; Lin, Y.; Connell, J.W.; Rubloff, G.W.; Lin, C.; Hu, L.

Small Structures, 2021, 2, 2100014.

Article

Supporting Information

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Stamping flexible Li alloy anode

Gao, J.; Chen, C.; Dong, Q.; Dai, J.; Yao, Y.; Li, T.; Runddlett, A.; Wang, R.; Wang, C.; Hu, L.

Advanced Materials, 2021, 33(11), 2005305.

Article

Supporting Information

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Tailoring grain growth and densification toward a high-performance solid-state electrolyte membrane

Hong, M.; Dong, Q.; Hu, L.

Materials Today, 2021, 42, 41.

Article

Supporting Information

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Nanoscale ion regulation in wood-based structures and their device applications

Chen, C.; Hu, L.

Advanced Materials, 2021, 33(28), 2002890.

Article

Supporting Information

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Salinity-gradient power generation with ionized wood membrane

Wu, Q.; Wang, C.; Wang, R.; Chen, C.; Gao, J.; Dai, J.; Liu, D.; Lin, Z.; Hu, L.

Advanced Materials, 2021, 33(28), 2002890.

Article

Supporting Information

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Developing fibrillated cellulose as a sustainable technological material

Li, T.; Chen, C.; Brozena, A.; Zhu, J.; Xu, L.; Driemeier, C.; Dai, J.; Rojas, O.; Isogai, A.; Wågberg, L.; Hu, L.

Nature, 2021, 590, 47.

Article

Supporting Information

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Wood nanomaterials and nanotechnologies

Chen, C.; Berglund, L.; Ingo, B.; Hu, L.

Advanced Materials, 2021, 33, 2006207.

Article

Supporting Information

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In situ lignin modification toward photonic wood

Xia, Q.; Chen, C.; Hu, L.

Advanced Materials, 2021, 33, 2001588.

Article

Supporting Information

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Advanced nanowood materials for water–energy nexus

Chen, X.; Zhu, X.; He, S.; Hu, L.; Ren, Z.

Advanced Materials, 2021, 33, 2001240.

Article

Supporting Information

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2020

Direct observation of the formation and stabilization of metallic nanoparticles on carbon supports

Huang, Z.; Yao, Y.; Pang, Z.; Yuan, Y.; Li, T.; He, K.; Hu, X.; Cheng, J.; Yao, W.; Liu, Y.; Nie, A.; Sharifi-Asl, S.; Cheng, M.; Song, B.; Amine, K.; Lu, J.; Li, T.; Hu, L.; Shahbazian-Yassar, R.

Nature Communications, 2020, 11(1), 6373

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Printable, high-performance solid-state electrolyte films

Ping, W.; Wang, C.; Wang, R.; Dong, Q.; Lin, Z.; Brozena, A. H.; Dai, J.; Luo, J.; Hu, L.

Science Advances, 2020, 6(47), eabc8641

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A General Method for Regenerating Catalytic Electrodes

Dong, Q.; Li, T.; Yao, Y.; Wang, X.; He, S.; Li, J.; Luo, J.; Zhang, H.; Pei, Y.; Zheng, C.; Hong, M.; Qiao, H.; Gao, J.; Wang, D.; Yang, B.; Hu, L.

Joule, 2020, 4(11), 2374-2386

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Continuous Synthesis of Hollow High‐Entropy Nanoparticles for Energy and Catalysis Applications

Wang, X.; Dong, Q.; Qiao, H.; Huang, Z.; Saray, M. T.; Zhong, G.; Lin, Z.; Cui, M.; Brozena, A. H.; Hong, M.; Xia, Q.; Gao, J.; Chen, G.; Shahbazian‐Yassar, R.; Wang, D.; Hu, L.

Advanced Materials, 2020, 32(46), 2002853

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Computation-Guided Synthesis of New Garnet-Type Solid-State Electrolytes via an Ultrafast Sintering Technique

Wang, R.; Ping, W.; Wang, C.; Liu, Y.; Gao, J.; Dong, Q.; Wang, X.; Mo, Y.; Hu, L.

Advanced Materials, 2020, 32(46), 2005059

Supporting Information

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Towards a high-performance garnet-based solid-state Li metal battery: A perspective on recent advances

Xu, S.; Hu, L.

Journal of Power Sources, 2020, 472, 228571


High-Temperature Pulse Method for Nanoparticle Redispersion

Xie, H.; Hong, M.; Hitz, E. M.; Wang, X.; Cui, M.; Kline, D. J.; Zachariah, M. R.; Hu, L.

Journal of the American Chemical Society, 2020, 142(41), 17364-17371

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Thermal Radiation Synthesis of Ultrafine Platinum Nanoclusters toward Methanol Oxidation

Qiao, Y.; Liu, Y.; Liu, Y.; Dong, Q.; Zhong, G.; Wang, X.; Liu, Z.; Wang, X.; He, S.; Zhou, W.; Wang, G.; Wang, C.; Hu, L.

Small Methods, 2020, 4(9), 2000265

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Rapid, high-temperature microwave soldering toward a high-performance cathode/electrolyte interface

Zhong, G.; Wang, C.; Wang, R.; Ping, W.; Xu, S.; Qiao, H.; Cui, M.; Wang, X.; Zhou, Y.; Kline, D. J.; Zachariah, M. R.; Hu, L.

Energy Storage Materials, 2020, 30, 385-391

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Predicting the flexural strength of Li-ion-conducting garnet type oxide for solid-state-batteries

Fu, Z.; McOwen, D.; Zhang, L.; Gong, Y.; Ren, Y.; Gritton, J. E.; Godbey, G.; Dai, J.; Hu, L.; Wachsman, E.

Journal of the American Ceramic Society, 2020, 103(9), 5186-5195

Supporting Information

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Structure-property-function relationships of natural and engineered wood

Chen, C.; Kuang, Y.; Zhu, S.; Burgert, I.; Keplinger, T.; Gong, A.; Li, T.; Berglund, L.; Eichhorn, S. J.; Hu, L.

Nature Reviews Materials, 2020, 5(9), 642-666

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Lignin-Based Direct Ink Printed Structural Scaffolds

Jiang, B.; Yao, Y.; Liang, Z.; Gao, J.; Chen, G.; Xia, Q.; Mi, R.; Jiao, M.; Wang, X.; Hu, L.

Small, 2020, 16(31), 1907212

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Strong and Superhydrophobic Wood with Aligned Cellulose Nanofibers as a Waterproof Structural Material

Li, Y.; Chen, C.; Song, J.; Yang, C.; Kuang, Y.; Vellore, A.; Hitz, E.; Zhu, M.; Jiang, F.; Yao, Y.; Gong, A.; Martini, A.; Hu, L.

Chinese Journal of Chemistry, 2020, 38(8), 823-829

Supporting Information

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Scalable aesthetic transparent wood for energy efficient buildings

Mi, R.; Chen, C.; Keplinger, T.; Pei, Y.; He, S.; Liu, D.; Li, J.; Dai, J.; Hitz, E.; Yang, B.; Burgert, I.; Hu, L.

Nature Communications, 2020, 11(1), 3836

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Highly Elastic Hydrated Cellulosic Materials with Durable Compressibility and Tunable Conductivity

Chen, C.; Song, J.; Cheng, J.; Pang, Z.; Gan, W.; Chen, G.; Kuang, Y.; Huang, H.; Ray, U.; Li, T.; Hu, L.

ACS Nano, 2020, 14(12), 16723-16734


Reversible Short-Circuit Behaviors in Garnet-Based Solid-State Batteries

Ping, W.; Wang, C.; Lin, Z.; Hitz, E.; Yang, C.; Wang, H.; Hu, L.

Advanced Energy Materials, 2020, 10(25), 2000702

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Hierarchical Polyelemental Nanoparticles as Bifunctional Catalysts for Oxygen Evolution and Reduction Reactions

Wu, M.; Cui, M.; Wu, L.; Hwang, S.; Yang, C.; Xia, Q.; Zhong, G.; Qiao, H.; Gan, W.; Wang, X.; Kline, D.; Zachariah, M. R.; Su, D.; Li, T.; Hu, L.

Advanced Energy Materials, 2020, 10(25), 2001119

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Thermal Shock Synthesis of Nanocatalyst by 3D-Printed Miniaturized Reactors

Qiao, Y.; Yao, Y.; Liu, Y.; Chen, C.; Wang, X.; Zhong, G.; Liu, D.; Hu, L.

Small, 2020, 16(22), 2000509

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Conductive Wood for High-Performance Structural Electromagnetic Interference Shielding

Gan, W.; Chen, C.; Giroux, M.; Zhong, G.; Goyal, M. M.; Wang, Y.; Ping, W.; Song, J.; Xu, S.; He, S.; Jiao, M.; Wang, C.; Hu, L.

Chemistry of Materials, 2020, 32(12), 5280-5289

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Continuous 2000 K droplet-to-particle synthesis

Wang, X.; Huang, Z.; Yao, Y.; Qiao, H.; Zhong, G.; Pei, Y.; Zheng, C.; Kline, D.; Xia, Q.; Lin, Z.; Dai, J.; Zachariah, M. R.; Yang, B.; Shahbazian-Yassar, R.; Hu, L.

Materials Today, 2020, 35, 106-114

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All-Natural, Degradable, Rolled-Up Straws Based on Cellulose Micro- and Nano- Hybrid Fibers

Wang, X.; Pang, Z.; Chen, C.; Xia, Q.; Zhou, Y.; Jing, S.; Wang, R.; Ray, U.; Gan, W.; Li, C.; Chen, G.; Foster, B.; Li, T.; Hu, L.

Advanced Functional Materials, 2020, 30(22), 1910417

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A general method to synthesize and sinter bulk ceramics in seconds

Wang, C.; Ping, W.; Bai, Q.; Cui, H.; Hensleigh, R.; Wang, R.; Brozena, A. H.; Xu, Z.; Dai, J.; Pei, Y.; Zheng, C.; Pastel, G.; Gao, J.; Wang, X.; Wang, H.; Zhao, J. C.; Yang, B.; Zheng, X. R.; Luo, J.; Mo, Y.; Dunn, B.; Hu, L.

Science, 2020, 368(6490), 521-526

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Holey three-dimensional wood-based electrode for vanadium flow batteries

Jiao, M.; Liu, T.; Chen, C.; Yue, M.; Pastel, G.; Yao, Y.; Xie, H.; Gan, W.; Gong, A.; Li, X.; Hu, L.

Energy Storage Materials, 2020, 27, 327-332

Supporting Information

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Overcoming immiscibility toward bimetallic catalyst library

Yang, C.; Ko, B. H.; Hwang, S.; Liu, Z.; Yao, Y.; Luc, W.; Cui, M.; Malkani, A. S.; Li, T.; Wang, X.; Dai, J.; Xu, B.; Wang, G.; Su, D.; Jiao, F.; Hu, L.

Science Advances, 2020, 6(17), eaaz6844

Article

Supporting Information

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Rapid Processing of Whole Bamboo with Exposed, Aligned Nanofibrils toward a High-Performance Structural Material

Chen, C.; Li, Z.; Mi, R.; Dai, J.; Xie, H.; Pei, Y.; Li, J.; Qiao, H.; Tang, H.; Yang, B.; Hu, L.

ACS Nano, 2020, 14(5), 5194-5202

Article

Supporting Information

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Garnet-Type Solid-State Electrolytes: Materials, Interfaces, and Batteries

Wang, C.; Fu, K.; Kammampata, S. P.; McOwen, D. W.; Samson, A. J.; Zhang, L.; Hitz, G. T.; Nolan, A. M.; Wachsman, E. D.; Mo, Y.; Thangadurai, V.; Hu, L.

Chemical Reviews, 2020, 120(10), 4257-4300

Article

Supporting Information

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High-throughput, combinatorial synthesis of multimetallic nanoclusters

Yao, Y.; Huang, Z.; Li, T.; Wang, H.; Liu, Y.; Stein, H. S.; Mao, Y.; Gao, J.; Jiao, M.; Dong, Q.; Dai, J.; Xie, P.; Xie, H.; Lacey, S. D.; Takeuchi, I.; Gregoire, J. M.; Jiang, R.; Wang, C.; Taylor, A. D.; Shahbazian-Yassar, R.; Hu, L.

Proceedings of the National Academy of Sciences, 2020, 117(12), 6316-6322

Article

Supporting Information

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Highly Efficient Water Treatment via a Wood-Based and Reusable Filter

Jiao, M.; Yao, Y.; Chen, C.; Jiang, B.; Pastel, G.; Lin, Z.; Wu, Q.; Cui, M.; He, S.; Hu, L.

ACS Materials Letters, 2020, 2(4), 430-437

Article

Supporting Information

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Computationally aided, entropy-driven synthesis of highly efficient and durable multi-elemental alloy catalysts

Yao, Y.; Liu, Z.; Xie, P.; Huang, Z.; Li, T.; Morris, D.; Finfrock, Z.; Zhou, J.; Jiao, M.; Gao, J.; Mao, Y.; Miao, J.; Zhang, P.; Shahbazian-Yassar, R.; Wang, C.; Wang, G.; Hu, L.

Science Advances, 2020, 6(11), eaaz0510

Article

Supporting Information

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A strong, flame-retardant, and thermally insulating wood laminate

Chen, G.; Chen, C.; Pei, Y.; He, S.; Liu, Y.; Jiang, B.; Jiao, M.; Gan, W.; Liu, D.; Yang, B.; Hu, L.

Chemical Engineering Journal, 2020, 383, 123109

Article

Supporting Information

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Fire‐Resistant Structural Material Enabled by an Anisotropic Thermally Conductive Hexagonal Boron Nitride Coating

Gan, W.; Chen, C.; Wang, Z.; Pei, Y.; Ping, W.; Xiao, S.; Dai, J.; Yao, Y.; He, S.; Zhao, B.; Das, S.; Yang, B.; Sunderland, P. B.; Hu, L.

Advanced Functional Materials, 2020, 30(10), 1909196

Article

Supporting Information

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A Strong, Tough, and Scalable Structural Material from Fast-Growing Bamboo

Li, Z.; Chen, C.; Mi, R.; Gan, W.; Dai, J.; Jiao, M.; Xie, H.; Yao, Y.; Xiao, S.; Hu, L.

Advanced Materials, 2020, 32(10), 1906308

Article

Supporting Information

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Aerosol Synthesis of High Entropy Alloy Nanoparticles

Yang, Y.; Song, B.; Ke, X.; Xu, F.; Bozhilov, K. N.; Hu, L.; Shahbazian-Yassar, R.; Zachariah, M. R.

Langmuir, 2020, 36(8), 1985-1992

Article

Supporting Information

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High-Performance, Scalable Wood-Based Filtration Device with a Reversed-Tree Design

He, S.; Chen, C.; Chen, G.; Chen, F.; Dai, J.; Song, J.; Jiang, F.; Jia, C.; Xie, H.; Yao, Y.; Hitz, E.; Chen, G.; Mi, R.; Jiao, M.; Das, S.; Hu, L.

Chemistry of Materials, 2020, 32(5), 1887-1895

Article

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A Dynamic Gel with Reversible and Tunable Topological Networks and Performances

Zhao, D.; Zhu, Y.; Cheng, W.; Xu, G.; Wang, Q.; Liu, S.; Li, J.; Chen, C.; Yu, H.; Hu, L.

Matter, 2020, 2(2), 390-403

Article

Supporting Information

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Rapid Laser Pulse Synthesis of Supported Metal Nanoclusters with Kinetically Tunable Size and Surface Density for Electrocatalytic Hydrogen Evolution

Yang, Y.; Yao, Y.; Kline, D. J.; Li, T.; Ghildiyal, P.; Wang, H.; Hu, L.; Zachariah, M. R.

ACS Applied Nano Materials, 2020, 3(3), 2959-2968

Article

Supporting Information

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Giant tunability of interlayer friction in graphite via ion intercalation

Pang, Z.; Wan, J.; Lu, A.; Dai, J.; Hu, L.; Li, T.

Extreme Mechanics Letters, 2020, 35, 100616

Article

Supporting Information

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A Clear, Strong, and Thermally Insulated Transparent Wood for Energy Efficient Windows

Mi, R.; Li, T.; Dalgo, D.; Chen, C.; Kuang, Y.; He, S.; Zhao, X.; Xie, W.; Gan, W.; Zhu, J.; Srebric, J.; Yang, R.; Hu, L.

Advanced Functional Materials, 2020, 30(1), 1907511

Article

Supporting Information

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Adding an electroactive response to 3D printed materials: Printing a piezoelectret

Kierzewski, I.; Bedair, S. S.; Hanrahan, B.; Tsang, H.; Hu, L.; Lazarus, N.

Additive Manufacturing, 2020, 31, 100963

Article

Supporting Information

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An Energy-Efficient, Wood-Derived Structural Material Enabled by Pore Structure Engineering towards Building Efficiency

He, S.; Chen, C.; Li, T.; Song, J.; Zhao, X.; Kuang, Y.; Liu, Y.; Pei, Y.; Hitz, E.; Kong, W.; Gan, W.; Yang, B.; Yang, R.; Hu, L.

Small Methods, 2020, 4(1), 1900747

Article

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Lignin as a Wood-Inspired Binder Enabled Strong, Water Stable, and Biodegradable Paper for Plastic Replacement

Jiang, B.; Chen, C.; Liang, Z.; He, S.; Kuang, Y.; Song, J.; Mi, R.; Chen, G.; Jiao, M.; Hu, L.

Advanced Functional Materials, 2020, 30(4), 1906307

Article

Supporting Information

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2019

Shape-driven arrest of coffee stain effect drives the fabrication of carbon-nanotube-graphene-oxide inks for printing embedded structures and temperature sensors

Zhao, B.; Wang, Y.; Sinha, S.; Chen, C.; Liu, D.; Dasgupta, A.; Hu, L.; Das, S.

Nanoscale, 2019, 11, 23402-23415.


 

Single-Digit-Micrometer Thickness Wood Speaker

Gan, W.; Chen, C.; Kim, H. T.; Lin, Z.; Dai, J.; Dong, Z.; Zhou, Z.; Ping, W.; He, S.; Xiao, S.; Yu, M.; Hu, L.

Nature Communications, 2019, 10, 5084.


Decoupling Ionic and Electronic Pathways in Low-Dimensional Hybrid Conductors

Zhou, Y.; Chen, C.; Zhang, X.; Liu, D.; Xu, L.; Dai, J.; Liou, S.-C.; Wang, Y.; Li, C.; Xie, H.; Wu, Q.; Foster, B.; Li, T.; Briber, R. M.; Hu, L.

Journal of the American Chemical Society, 2019, 141, 17830-17837.


Overcoming Immiscibility via a Milliseconds-Long “Shock” Synthesis toward Alloyed Nanoparticles

Yao, Y.; Dong, Q.; Hu, L.

Matter, 2019, 1, 1445-1455. 


Rapid, High-Temperature In-Situ Microwave Synthesis of Bulk Nanocatalysts

Zhong, G.; Xu, S.; Cui, M.; Dong, Q.; Wang, X.; Xia, Q.; Gao, J.; Pei, Y.; Qiao, Y.; Pastel, P.; Sunaoshi, T.; Yang, B.; Hu, L.

Small, 2019, 15, 1904881.


General, Vertical, Three-Dimensional Printing of Two-Dimensional Materials with Multiscale Alignment

Liang, Z.; Pei, Y.; Chen, C.; Jiang, B.; Yao, Y.; Xie, H.; Jiao, M.; Chen, G.; Li, T.; Yang, B.; Hu, L.

ACS Nano, 2019, 13, 12653-12661.


Ultrafast, Controllable Synthesis of Sub-Nano Metallic Clusters through Defect Engineering

Yao, Y.; Huang, Z.; Xie, P.; Li, T.; Lacey, S. D.; Jiao, M.; Xie, H.; Fu, K. K.; Jacob, R. J.; Kline, D. J.; Yang, Y.; Zachariah, M. R.; Wang, C.; Shahbazian-Yassar, R.; Hu, L.

ACS Applied Materials & Interfaces, 2019, 11, 29773-29779.


Synthesis of Metal Oxide Nanoparticles by Rapid, High-Temperature 3D Microwave Heating

Zhong, G.; Xu, S.; Chen, C.; Kline, D. J.; Giroux, M.; Pei, Y.; Jiao, M.; Liu, D.; Mi, R.; Xie, H.; Yang, B.; Hu, L.

Advanced Functional Materials, 2019, 29, 1904282.


Highly Efficient Decomposition of Ammonia Using High-Entopy Alloy Catalysts

Xiet, P.; Yao, Y.; Huang, Z.; Liu, Z.; Zhang, J.; Li, T.; Wang, G.; Shahbazian-Yassar, R.; Hu, L.; Wang, C.

Nature Communications, 2019, 10, 4011.


Stable Multimetallic Nanoparticles for Oxygen Electrocatalysis

Lacey, S. D.; Dong, Q.; Huang, Z.; Luo, J.; Xie, H.; Lin, Z.; Kirsch, D. J.; Vattipalli, V.; Povinelli, C.; Fan, W.; Shahbazian-Yassar, R.; Wang, D.; Hu, L.

Nano Letters, 2019, 19, 5149-5158.


In Situ Iron Coating on Nanocatalysts for Efficient and Durable Oxygen Evolution Reaction

Yang, C.; Cui, M.; Li, N.; Liu, Z.; Hwang, S.; Xie, H.; Wang, X.; Kuang, Y.; Jiao, M.; Su, D.; Hu, L.

Nano Energy, 2019, 63, 103855.


Super Elastic and Thermally Insulating Carbon Aerogel: Go Tubular Like Polar Bear Hair

Chen, C.; Hu, L.

Matter, 2019, 1, 36-38.


High Temperature Shockwave Stabilized Single Atoms

Yao, Y.; Huang, Z.; Xie, P.; Wu, L.; Ma, L.; Li, T.; Pang, Z.; Jiao, M.; Liang, Z.; Gao, J.; He, Y.; Kline, D.; Zachariah, M. R.; Wang, C.; Lu, J.; Wu, T.; Li, T.; Wang, C.; Shahbazian-Yassar, R.; Hu, L.

Nature Nanotechnology, 2019, 14, 851-857.


Thermally Conductive Reduced Graphene Oxide Thin Films for Extreme Temperature Sensors

Zeng, Y.; Li, T.; Yao, Y.; Li, T.; Hu, L.; Marconnet, A.

Advanced Functional Materials, 2019, 29, 1901388.


Uniform, Scalable, High-Temperature Microwave Shock for Nanoparticle Synthesis through Defect Engineering

Xu, S.; Zhong, G.; Chen, C.; Zhou, M.; Kline, D. J.; Jacob, R. J.; Xie, H.; He, S.; Huang, Z.; Dai, J.; Brozena, A. H.; Shahbazian-Yassar, R.; Zachariah, M. R.; Anlage, S. M.; Hu, L.

Matter, 2019, 1, 759-769.


Fly-Through Synthesis of Nanoparticles on Textile and Paper Substrates

Jiao, M.; Yao, Y.; Pastel, G.; Li, T.; Liang, Z.; Xie, H.; Kong, W.; Liu, B.; Song, J.; Hu, L.

Nanoscale, 2019, 11, 6174-6181.


Scalable Dry Processing of Binder-Free Lithium-Ion Battery Electrodes Enabled by Holey Graphene

Kirsch, D. J.; Lacey, S. D.; Kuang, Y.; Pastel, G.; Xie, H.; Connell, J. W.; Lin, Y.; Hu, L.

ACS Applied Energy Materials, 2019, 2, 2990-2997.


Transient, In Situ Synthesis of Ultrafine Ruthenium Nanoparticles for a High-Rate Li-CO2 Battery

Qiao, Y.; Xu, S.; Liu, Y.; Dai, J.; Xie, H.; Yao, Y.; Mu, X.; Chen, C.; Kline, D. J.; Hitz, E.; Liu, B.; Hu, L.

Energy & Environmental Science, 2019, 12, 1100-1107.


Millisecond Synthesis of CoS Nanoparticles for Highly Efficient Overall Water Splitting

Chen, Y.; Xu, S.; Zhu, S.; Jacob, R. J.; Pastel, G.; Wang, Y.; Li, Y.; Dai, J.; Chen, F.; Xie, H.; Liu, B.; Yao, Y.; Salamanca-Riba, L. G.; Zachariah, M. R.; Li, T.; Hu, L.

Nano Research, 2019, 12, 2259-2267.


One-Step, Catalyst-Free, Scalable In Situ Synthesis of Single-Crstal Aluminum Nanowires in Confined Graphene Space

Chen, Y.; Wang, Y.; Zhu, S.; Danner, V. A.; Li, Y.; Dai, J.; Li, H.; Fu, K.; Li, T.; Liu, Y.; Hu, L.

ACS Applied Materials & Interfaces, 2019, 11, 6009-6014.


Ultraigh-Temperature Conversion of Biomass to Highly Conductive Graphitic Carbon

Jiang, F.; Yao, Y.; Natarajan, B.; Yang, C.; Gao, T.; Xie, H.; Wang, Y.; Xu, L.; Chen, Y.; Gilman, J.; Cui, L.; Hu, L.

Carbon, 2019, 144, 241-248.


A General, Highly Efficient, High Temperature Thermal Pulse Toward High Performance Solid State Electrolyte

Wang, C.; Xie, H.; Ping, W.; Dai, J.; Feng, G.; Yao, Y.; He, S.; Weaver, J.; Wang, H.; Gaskell, K.; Hu, L.

Energy Storage Materials, 2019, 17, 234-241.


Flexible Garnet Solid-State Electrolyte Membranes Enabled by Tile-and-Grout Design

Xie, H.; Bao, Y.; Cheng, J.; Wang, C.; Hitz, E. M.; Yang, C.; Liang, Z.; Zhou, Y.; He, S.; Li, T.; Hu, L.

ACS Energy Letters, 2019, 4, 2668-2674.


Flexible Solid-State Electrolyte with Aligned Nanostructures Derived from Wood

Dai, J.; Fu, K.; Gong, Y.; Song, J.; Chen, C.; Yao, Y.; Pastel, G.; Zhang, L.; Wachman, E.; Hu, L.

ACS Materials Letters, 2019, 1, 354-361.


Thick Electrode Batteries: Principles, Opportunities, and Challenges

Kuang, Y.; Chen, C.; Kirsch, D.; Hu, L.

Advanced Energy Materials, 2019, 9, 1901457. 


A Silicon Anode for Garnet-Based All-Solid-State Batteries: Interfaces and Nanomechanics

Ping, W.; Yang, C.; Bao, Y.; Wang, C.; Xie, H.; Hitz, E.; Cheng, J.; Li, T.; Hu, L.

Energy Storage Materials, 2019, 21, 246-252.


Facile, Solvent-Free Preparation of High Density, High Mass Loading Sulfur Cathodes Enabled by Dry-Presressable Holey Graphene Scaffolds

Lin, Y.; Jones, K. J.; Greenburg, L. C.; Kim, J.-W.; Hu, L.; Connell, J. W.

Batteries & Supercaps, 2019, 2, 774-783.


Electrochemical Stability of Garnet-Type Li7La2.75Ca0.25Zr1.75Nb0.25O12 with and without Atomic Layer Deposited-Al2O3 under CO2 and Humidity

Hofstetter, K.; Samson, A. J.; Dai, J.; Gritton, J. E.; Hu, L.; Wachman, E. D.; Thangadurai, V.

Journal of The Electrochemical Society, 2019, 166, A1844-A1852.


Designing Textile Architectures for High Energy-Efficiency Human Body Sweat- and Cooling-Management

Fu, K.; Yang, Z.; Pei, Y.; Wang, Y.; Xu, B.; Wang, Y. H.; Yang, B.; Hu, L.

Advanced Fiber Materials, 2019, 1, 61-70.


Challenges and Opportunities for Solar Evaporation

Chen, C.; Kuang, Y.; Hu, L.

Joule, 2019, 3, 683-718. 


Architecting a Floatable, Durable, and Scalable Steam Generator: Hydrophobic/Hydrophilic Bifunctional Structure for Solar Evaporation Enhancement

Gao, T.; Li, Y.; Chen, C.; Yang, Z.; Kuang, Y.; Jia, C.; Song, J.; Hitz, E.; Liu, B.; Huang, H.; Yu, J.; Yang, B.; Hu, L.

Small Methods, 2019, 3, 1800176.


All Natural, High Efficient Groundwater Extraction via Solar Steam/Vapor Generation

Wang, Y.; Liu, H.; Chen, C.; Kuang, Y.; Song, J.; Xie, H.; Jia, C.; Kronthal, S.; Xu, X.; He, S.; Hu, L.

Advanced Sustainable Systems, 2019, 3, 1800055.


An Electron/Ion Dual-Conductive Alloy Framework for High-Rate and High-Capacity Solid-State Lithium-Metal Batteries

Yang, C.; Xie, H.; Ping, W.; Fu, K.; Liu, B.; Rao, J.; Dai, J.; Wang, C.; Pastel, G.; Hu, L.

Advanced Materials, 2019, 31, 1804815.


High-Rate Lithium Cycling in a Scalable Trilayer Li-Garnet-Electrolyte Architecure

Hitz, G. T.; McOwen, D. W.; Zhang, L.; Ma, Z.; Fu, Z.; Wen, Y.; Gong, Y.; Dai, J.; Hamann, T. R.; Hu, L.; Wachmsan, E. D.

Materials Today, 2019, 22, 50-57.

2018

Flexible, bio-compatible nanofluidic ion conductor

Wang, C.; Wang, S.; Chen, G.; Kong, W.; Ping, W.; Dai, J.; Pastel, G.; Xie, H.; He, S.; Das, S.; Hu, L.

Chemistry of Materials, 2018, 30, 21, 7707–7713.


Nanocellulose toward advanced energy storage devices: structure and electrochemistry

Chen, C.; Hu, L.

Accounts of Chemical Research, 2018, 51, 12, 3154–3165.


Narrow bandgap semiconductor decorated wood membrane for high-efficiency solar-assisted water purification

Liu, H.; Chen, C.; Wen, H.; Guo, R.; Williams, N.; Wang, B.; Chen, F.; Hu, L.

Journal of Materials Chemistry A, 2018, 6(39), 18839-18846.


Conductive cellulose nanofiber enabled thick electrode for compact and flexible energy storage devices

Kuang, Y.; Chen, C.; Pastel, G.; Li, Y.; Song, J.; Mi, R.; Kong, W.; Liu, B.; Jiang, Y.; Yang, K.; Hu, L.

Advanced Energy Materials, 2018, 8(33), 1802398.


Flexible lithium-CO2 battery with ultrahigh capacity and stable cycling

Xu, S.; Chen, C.; Kuang, Y.; Song, J.; Gan, W.; Liu, B.; Hitz, E.; Connell, J.; Lin, Y.; Hu, L.

Energy & Environmental Science, 2018, 11, 3231-3237.


Processing bulk natural wood into a high-performance structural material

Song, J.; Chen, C.; Zhu, S.; Zhu, M.; Dai, J.; Ray, U.; Li, Y.; Kuang, Y.; Li, Y.; Quispe, N.; Yao, Y.; Gong, A.; Leiste, U.H.; Bruck, H.A.; Zhu, J.Y.; Vellore, A.; Li, H.; Minus, M.L.; Jia, Z.; Martini, A.; Li, T.; Hu, L.

Nature, 2018, 55, 224–228.


Anisotropic, lightweight, strong, and super thermally insulating nanowood with naturally aligned nanocellulose

Li, T.; Song, J.; Zhao, X.; Yang, Z.; Pastel, G.; Xu, S.; Jia, C.; Dai, J.; Chen, C.; Gong, A.; Jiang, F.; Yao, Y.; Fan, T.; Yang, B.; Wågberg, L.; Yang, R.; Hu, L.

Science Advances, 2018, 4(3), 3724.


Isotropic paper directly from anisotropic wood: top-down green transparent substrate toward biodegradable electronics

Zhu, M.; Jia, C.; Wang, Y.; Fang, Z.; Dai, J.; Xu, L.; Huang, D.; Wu, J.; Li, Y.; Song, J.; Yao, Y.; Hitz, E.; Wang, Y.; Hu, L.

ACS Applied Materials & Interfaces, 2018, 10, 34, 28566–28571.


Muscle-inspired highly anisotropic, strong, ion-conductive hydrogels

Kong, W.; Wang, C.; Jia, C.; Kuang, Y.; Pastel, G.; Chen, C.; Chen, G.; He, S.; Huang, H.; Zhang, J.; Wang, S.; Hu, L.

Advanced Materials, 2018, 30(39), 1801934.


From wood to textiles: top-down assembling aligned cellulose nanofibers

Jia, C.; Chen, C.; Kuang, Y.; Fu, K.; Wang, Y.; Yao, Y.; Kronthal, S.; Hitz, E.; Song, J.; Xu, F.; Liu, B.; Hu, L.

Advanced Materials, 2018, 30(30), 1801347.


Anisotropic, mesoporous microfluidic framework with scalable, aligned cellulose nanofibers

Jia, C.; Jiang, F.; Hu, P.; Kuang, Y.; He, S.; Li, T.; Chen, C.; Murphy, A.; Yang, C.; Yao, Y.; Dai, J.; Raub, C.; Luo, X.; Hu, L.

ACS Applied Materials & Interfaces, 2018, 10, 8, 7362–7370.


Transparent, anisotropic biofilm with aligned bacterial cellulose nanofibers

Wang, S.; Li, T.; Chen, C.; Kong, W.; Zhu, S.; Dai, J.; Diaz, A.; Hitz, E.; Solares, S.; Li, T.; Hu. L.

Advanced Functional Materials, 2018, 28(24), 1707491.


Dramatic enhancement of CO2 photoreduction by bio-degradable light-management paper

Wang, Y.; Li, T.; Yao, Y.; Li, X.; Bai, X.; Yin, C.; Williams, N.; Kang, S.; Cui, L.; Hu, L.

Advanced Energy Materials, 2018, 8(16), 1703136.


Scalable and highly efficient mesoporous wood-based solar steam generation device: localized heat, rapid water transport

Li, T.; Liu, H.; Zhao, X.; Chen, G.; Dai, J.; Pastel, G.; Jia, C.; Chen, C.; Hitz, E.; Siddhartha, D.; Yang, R.; Hu, L.

Advanced Functional Materials, 2018, 28(16), 1707134.


Scalable and sustainable approach toward highly compressible, anisotropic, lamellar carbon sponge

Chen, C.; Song, J.; Zhu, S.; Li, Y.; Kuang, Y.; Wan, J.; Kirsch, D.; Xu, L.; Wang, Y.; Gao, T.; Wang, Y.; Gan, W.; Huang, H.; Gong, A.; Li, T.; Xie, J.; Hu, L.

Chem, 2018, 4(3), 544–554.


Lightweight, mesoporous, and highly absorptive all-nanofiber aerogel for efficient solar steam generation

Jiang, F.; Liu, H.; Li, Y.; Kuang, Y.; Xu, X.; Chen, C.; Huang, H.; Jia, C.; Zhao, X.; Hitz, E.; Zhou, Y.; Yang, R.; Cui, L.; Hu, L.

ACS Applied Materials & Interfaces, 2018, 10, 1, 1104–1112.


High-performance solar steam device with layered channels: artificial tree with a reversed design

Liu, H.; Chen, C.; Chen, G.; Kuang, Y.; Zhao, X.; Song, J.; Jia, C.; Xu, X.; Hitz, E.; Wang, S.; Jiang, F.; Li, T.; Li, Y.; Gong, A.; Yang, R.; Das, S.; Hu, L.

Advanced Energy Materials, 2018, 8(8), 1701616.


Wood based nanotechnologies toward sustainability

Jiang, F.; Li, T.; Li, Y.; Zhang, Y.; Gong, A.; Dai, J.; Hitz, E.; Luo, W.; Hu, L.

Advanced Materials, 2018, 30(1), 1703453.


Catalyst-free in situ carbon nanotube growth in confined space via high temperature gradient

Chen, C.; Chen, Y.; Zhu, S.; Dai, J.; Pastel, G.; Yao, Y.; Liu, D.; Wang, Y.; Wan, J.; Li, T.; Luo, W.; Hu, L.

Research, 2018, 1, 1793784.


3D printed graphene oxide framework with thermal shock synthesized nanoparticles for Li-CO2 batteries

Qiao, Y.; Liu, Y.; Chen, C.; Xie, H.; Yao, Y.; He, S.; Ping, W.; Liu, B.; Hu, L.

Advanced Functional Materials, 2018, 28(51), 1805899.


In-situ “chainmail catalyst” assembly in low-tortuosity, hierarchical carbon frameworks for efficient and stable hydrogen generation

Li, Y.; Gao, T.; Yao, Y.; Liu, Z.; Kuang, Y.; Chen, C.; Song, J.; Xu, S.; Hitz, E.; Liu, B.; Jacob, R.; Zachariah, M.; Wang, G.; Hu, L.

Advanced Energy Materials, 2018, 8(25), 1801289.


High temperature atomic mixing toward well-dispersed bimetallic electrocatalysts

Chen, F.; Yao, Y.; Nie, A.; Xu, S.; Dai, J.; Hitz, E.; Li, Y.; Lu, A.; Huang, Z.; Li, T.; Shahbazian‐Yassar, R.; Hu, L.

Advanced Energy Materials, 2018, 8(25), 1800466.


Carbo-thermal shock synthesis of high entropy alloy nanoparticles

Yao, Y.; Huang, Z.; Xie, P.; Lacey, S.; Jacob, R.; Xie, H.; Chen, F.; Nie, A.; Pu, T.; Rehwoldt, M.; Yu, D.; Zachariah, M.; Wang, C.; Shahbazian-Yassar R.; Li, J.; Hu, L.

Science, 2018, 359, 1489–1494.


Tuning high-temperature wetting behavior of metal toward ultrafine nanoparticles

Zhou, Y.; Natarajan, B.; Fan, Y.; Xie, H.; Yang, C.; Xu, S.; Yao, Y.; Jiang, F.; Zhang, Q.; Gilman, J.; Hu, L.

Angewandte Chemie, 2018, 57(10), 2625 –2629.


Dynamics of a water nanodrop through a holey graphene matrix: role of surface functionalization, capillarity, and applied forcing

Wang, Y.; Sinha, S.; Ahuja, K.; Desai, P.; Dai, J.; Hu, L.; Das, S.

The Journal of Physical Chemistry, 2018, 122(23), 12243−12250.


Epitaxial welding of carbon nanotube networks for aqueous battery current collectors

Yao, Y.; Jiang, F.; Yang, C.; Fu, K.; Hayden, J.; Lin, C.; Xie, H.; Jiao, M.; Yang, C.; Wang, Y.; He, S.; Xu, F.; Hitz, E.; Gao, T.; Dai, J.; Luo, W.i; Rubloff, G.; Wang, C.; Hu, L.

ACS Nano, 2018, 12(6), 5266−5273.


Reduced graphene oxide film with record-high conductivity and mobility

Wang, Y.; Chen, Y.; Lacey, S.; Xu, L.; Xie, H.; Li, T.; Danner, V.; Hu, L.

Materials Today, 2018, 21(2), 186-192.


Necklace-like silicon carbide and carbon nanocomposites formed by steady joule heating

Xie, H.; Fu, K.; Yang, C.; Yao, Y.; Rao, J.; Zhou, Y.; Liu, B.; Kirsch, D.; Hu, L.

Small Methods, 2018, 2(4), 1700371.


Interface engineering for garnet-based solid-state Li metal batteries: materials, structures, and characterizations

Dai, J.; Yang, C.; Wang, C.; Pastel, G.; Hu, L.

Advanced Materials, 2018, 30(48), 1802068.


All-in-one lithium-sulfur battery enabled by a porous-dense-porous garnet architecture

Xu, S.; McOwen, D.; Zhang, L.; Hitz, G.; Wang, C.; Ma, Z.; Chen, C.; Luo, W.; Dai, J.; Kuang, Y.; Hitz, E.; Fu, K.; Gong, Y.; Wachsman, E.; Hu, L.

Energy Storage Materials, 2018, 15, 458-464.


Electrode materials of sodium-ion batteries toward practical application

Huang, Y.; Zheng, Y.; Li, X.; Adams, F.; Luo, W.; Huang, Y.; Hu, L.

ACS Energy Letters, 2018, 3(7), 1604−1612.


Three-dimensional, solid-State mixed electron-ion conductive framework for lithium metal anode

Xu, S.; McOwen, D.; Wang, C.; Zhang, L.; Luo, W.; Chen, C.; Li, Y.; Gong, Y.; Dai, J.; Kuang, Y.; Yang, C.; Hamann, T.; Wachsman, E.; Hu, L.

Nano Letters, 2018, 18(6), 3926−3933.


Continuous plating/stripping behavior of solid-state lithium metal anode in a 3D ion-conductive framework

Yang, C.; Zhang, L.; Liu, B.; Xu, S.; Hamann, T.; McOwen, D.; Dai, J.; Luo, W.; Gong, Y.; Wachsman, E.; Hu, L.

Proceedings of the National Academy of Sciences, 2018, 115(15), 3770−3775.


3D lithium metal anodes hosted in asymmetric garnet frameworks toward high energy density batteries

Liu, B.; Zhang, L.; Xu, S.; McOwen, D.; Gong, Y.; Yang, C.; Pastel, G.; Xie, H.; Fu, K.; Dai, J.; Chen, C.; Wachsman, E.; Hu, L.

Energy Storage Materials, 2018, 14, 376−382.


3D Li/Na wettable framework for dendrite-free alkali metal anodes

Zhang, Y.; Wang, C.; Pastel, G.; Kuang, Y.; Xie, H.; Li, Y.; Liu, B.; Luo, W.; Chen, C.; Hu, L.

Advanced Energy Materials, 2018, 8(18), 1800635.


A self-buffering structure for application in high- performance sodium-ion batteries

Liu, Z.; Yue, C.; Chen, C.; Xiang, J.; Hu, F.; Lee, D.; Shin, D.; Sun, S. Hu, L.; Song, T.

Energy Storage Materials, 2018, 15, 242−248.


3D-printing electrolytes for solid-state batteries

McOwen, D.; Xu, S.; Gong, Y.; Wen, Y.; Godbey, G.; Gritton, J.; Hamman, T.; Dai, J.; Hitz, G.; Hu, L.; Wachsman, E.

Advanced Materials, 2018, 30(18), 1707132.


Lithium-ion conductive ceramic textile: a new architecture for flexible solid-state lithium metal batteries

Gong, Y.; Fu, K.; Xu, S.; Dai, J.; Hamann, T.; Zhang, L.; Hitz, G.; Fu, Z.; Ma, Z.; McOwen, D.; Han, X.; Hu, L.; Wachsman, E.

Materials Today, 2018, 21(6), 594−601.


Flexible, scalable, and highly conductive garnet-polymer solid electrolyte templated by bacterial cellulose

Xie, H.; Yang, C.; Fu, K.; Yao, Y.; Jiang, F.; Hitz, E.; Liu, B.; Wang, S.; Hu, L.

Advanced Energy Materials, 2018, 8(18), 1703474.


3D printed separator for the thermal management of high-performance Li metal anodes

Liu, Y.; Qiao, Y.; Zhang, Y.; Yang, Z.; Gao, T.; Kirsch, D.; Liu, B.; Song, J.; Yang, B.; Hu, L.

Energy Storage Materials, 2018, 12, 197−203.


Extrusion-based 3D printing of hierarchically porous advanced battery electrodes

Lacey, S.; Kirsch, D.; Li, Y.; Morgenstern, J.; Zarket, B.; Yao, Y.; Dai, J.; Garcia, L.; Liu, B.; Gao, T.; Xu, S.; Raghavan, S.; Connell, J.; Lin, Y.; Hu, L.

Advanced Materials, 2018, 30(12), 1705651.


Highly conductive, light weight, robust, corrosion-resistance, scalable, all-fiber based current collectors for aqueous acidic batteries

Luo, W.; Hayden, J.; Jang, S.H.; Wang, Y.; Zhang, Y.; Kuang, Y.; Wang, Y.; Zhou, Y.; Rubloff, G.W.; Lin, C.; Hu, L.

Advanced Energy Materials, 2018, 8(9), 1702615.


Textile inspired lithium-oxygen battery cathode with decoupled oxygen and electrolyte pathways

Xu, S.; Yao, Y.; Guo, Y.; Zeng, X.; Lacey, S.D.; Song, H.; Chen, C.; Li, Y.; Dai, J.; Wang, Y.; Chen, Y.; Liu, B.; Fu, K.; Amine, K.; Lu, J; Hu, L.

Advanced Materials, 2018, 30(4), 1704907.


Universal soldering of lithium and sodium alloys on various substrates for batteries

Wang, C.; Xie, H.; Zhang, L.; Gong, Y.; Pastel, G.; Dai, J.; Liu, B.; Wachsman, E. D.; Hu, L.

Advanced Energy Materials, 2018, 8(6), 1701963.


Thermoelectric properties and performance of flexible reduced graphene oxide films up to 3,000 K

Li, T.; Pickel, A.; Yao, Y.; Chen, Y.; Zeng, Y.; Lacey, S.D.; Li, Y.; Wang, Y.; Dai, J.; Wang, Y.; Yang, B.; Fuhrer, M.S.; Marconnet, A.;Dames, C.; Drew, D.H.; Hu, L.

Nature Energy, 2018, 3, 148−156.


A flexible solar-blind 2D boron nitride nanopaper-based photodetector with high thermal resistance

Lin, C.; Fu, H.; Cheng, B.; Tsai, M.; Luo, W.; Zhou, L.; Jang, S.; Hu, L.; He, J.

NPJ 2D Materials and Applications, 2018, 2, 23.

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