2026
Oil-impregnated densified wood veneer with high electrical insulation enabled by nanosized oil channels
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A molecular pathway to corrosion-resistant printable copper
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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
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Journal of The Electrochemical Society, 2026, 173 040501
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Electrified vapour deposition at ultrahigh temperature and atmospheric pressure for nanomaterials synthesis
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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
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Pyrolyzed preceramic precursors to compositionally complex ceramics
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Boron nitride enhanced electric insulation paper for extending transformer thermal life
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2024
3775-year-old wood burial supports “wood vaulting” as a durable carbon removal method
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Kilogram-scale production of strong and smart cellulosic fibers featuring unidirectional fibril alignment
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Dissimilar material joining of densified superwood to aluminum by adhesive bonding
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2023
The critical roles of water in the processing, structure, and properties of nanocellulose
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2022
Lightweight, thermally insulating, fire-proof graphite-cellulose foam
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A high-performance hydroxide exchange membrane enabled by Cu2+-crosslinked chitosan
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Nature Nanotechnology, 2022, 17, 629.

Current international research into cellulose as a functional nanomaterial for advanced applications
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Sustainable high-strength macrofibres extracted from natural bamboo
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Rapid pressureless sintering of glasses
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Programmable heating and quenching for efficient thermochemical synthesis
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Multi-principal elemental intermetallic nanoparticles synthesized via a disorder-to-order transition
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A sustainable chitosan-zinc electrolyte for high-rate zinc metal batteries
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2021
Lightweight, strong, moldable wood via cell wall engineering as a sustainable structural material
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Scalable wood hydrogel membrane with nanoscale channels
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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.
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3D-printed, high-porosity, high-strength graphite aerogel
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A bio-inspired, hierarchically porous structure with decoupled fluidic transportation and evaporative pathway toward high-performance evaporation
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Recent advances in functional materials through cellulose nanofiber templating
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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.
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Tailoring the local environment of platinum in single-atom Pt1/CeO2 catalysts for robust low-temperature CO oxidation
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3D printed graphene-based 3000 K probe
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Supporting Information
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Continuous fly-through high-temperature synthesis of nanocatalysts
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A high-entropy phosphate catalyst for oxygen evolution reaction
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Carbon-supported high-entropy oxide nanoparticles as stable electrocatalysts for oxygen reduction reactions
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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.
Movie1
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.
Movie1
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
Movie1
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
Movie1
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
Movie1
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
Movie1
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
Supporting Information
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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
Supporting Information
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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. (Preview commentary on Rajeeva et al., in the same issue, pp. 1606-1617 — not primary research)
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. (Invited Review)
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. (Review)
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.