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[11]Boyang Liu, Kun Fu, Yunhui Gong, Chunpeng Yang, Yonggang Yao, Yanbin Wang, Chengwei Wang, Yudi Kuang, Glenn Pastel, Hua Xie, Eric D Wachsman, Liangbing Hu, "Rapid thermal annealing of cathode-garnet interface toward high-temperature solid state batteries", Nano Letters, 17, 8, 2017..
[12]Weiwei Ping, Chunpeng Yang, Yinhua Bao, Chengwei Wang, et al, Teng Li, Liangbing Hu, "A silicon anode for garnet-based all-solid-state batteries: Interfaces and nanomechanics", Energy Storage Materials, 21, 2019..
[13]Weiwei Ping*, Chengwei Wang*, et al, Jian Luo, Liangbing Hu, "Printable, High-Performance Solid-State Electrolyte Films ", Science Advances, 6, eabc8641, 2020..
[14]Vinodkumar Etacheri*, Chengwei Wang*, Michael J. O’Connell, Candace K. Chan and Vilas G. Pol, "Porous Carbon Sphere anodes for Enhanced Lithium-Ion Storage", J. Mater. Chem. A, 3, 18, 2015..
[15]Wei Luo, Yunhui Gong, Yizhou Zhu, Kun Kelvin Fu, Jiaqi Dai, Steven D Lacey, Chengwei Wang, Boyang Liu, Xiaogang Han, Yifei Mo, Eric D Wachsman, Liangbing Hu, "Transition from superlithiophobicity to superlithiophilicity of garnet solid-state electrolyte", Journal of the American Chemical Society, 138, 37, 2016..
[16]Qing‐Yun Wu*, Chengwei Wang*, et al, Dapeng Liu, Zhiwei Lin, Liangbing Hu, "Salinity‐Gradient Power Generation with Ionized Wood Membranes", Advanced Energy Materials, 10, 1, 2020..
[17]Chengwei Wang*, et al, Eric D. Wachsman, Liangbing Hu, "Mixed ionic-electronic conductor enabled effective cathode-electrolyte interface in all solid state batteries", Nano Energy, 50, 2018..
[18]Hua Xie, Yinhua Bao, Jian Cheng, Chengwei Wang, et al, Teng Li, Liangbing Hu, "Flexible garnet solid-state electrolyte membranes enabled by tile-and-grout design", ACS Energy Letters, 4, 11, 2019..
[19]Shaomao Xu, Dennis W McOwen, Chengwei Wang, et al, Eric D Wachsman, Liangbing Hu, "Three-Dimensional, Solid-State Mixed Electron–Ion Conductive Framework for Lithium Metal Anode", Nano Letters, 18, 6, 2018..
[20]Cheng Qian, Chengwei Wang, Kyle Doudrick, and Candace K. Chan, "Hexavalent chromium removal using metal oxide photocatalysts", Applied Catalysis B: Environmental,176-177, 2015..
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