Lithium–graphite paste: an interface compatible anode for solid‐state batteries J Duan, W Wu, AM Nolan, T Wang, J Wen, C Hu, Y Mo, W Luo, Y Huang Advanced Materials 31 (10), 1807243, 2019 | 291 | 2019 |
Graphitic Carbon Nitride (g‐C3N4): An Interface Enabler for Solid‐State Lithium Metal Batteries Y Huang, B Chen, J Duan, F Yang, T Wang, Z Wang, W Yang, C Hu, ... Angewandte Chemie 132 (9), 3728-3733, 2020 | 267 | 2020 |
Is graphite lithiophobic or lithiophilic? J Duan, Y Zheng, W Luo, W Wu, T Wang, Y Xie, S Li, J Li, Y Huang National Science Review 7 (7), 1208-1217, 2020 | 142 | 2020 |
A self-regulated gradient interphase for dendrite-free solid-state Li batteries T Wang, J Duan, B Zhang, W Luo, X Ji, H Xu, Y Huang, L Huang, Z Song, ... Energy & Environmental Science 15 (3), 1325-1333, 2022 | 122 | 2022 |
Enabling high rate performance of Ni-rich layered oxide cathode by uniform titanium doping H Sun, Z Cao, T Wang, R Lin, Y Li, X Liu, L Zhang, F Lin, Y Huang, W Luo Materials Today Energy 13, 145-151, 2019 | 95 | 2019 |
Shaping the contact between Li metal anode and solid‐state electrolytes J Duan, L Huang, T Wang, Y Huang, H Fu, W Wu, W Luo, Y Huang Advanced Functional Materials 30 (15), 1908701, 2020 | 56 | 2020 |
Atomic layer deposition of core-shell structured V2O5@ CNT sponge as cathode for potassium ion batteries F Ye, D Lu, X Gui, T Wang, X Zhuang, W Luo, Y Huang Journal of Materiomics 5 (3), 344-349, 2019 | 38 | 2019 |
Engineering a flexible and mechanically strong composite electrolyte for solid-state lithium batteries TR Wang, RQ Zhang, YM Wu, GN Zhu, CC Hu, JY Wen, W Luo J. Energy Chem 46, 187-190, 2020 | 30 | 2020 |
Negating Li+ transfer barrier at solid-liquid electrolyte interface in hybrid batteries L Huang, H Fu, J Duan, T Wang, X Zheng, Y Huang, T Zhao, Q Yu, J Wen, ... Chem 8 (7), 1928-1943, 2022 | 26 | 2022 |
Engineering Li metal anode for garnet-based solid-state batteries T Wang, W Luo, Y Huang Accounts of Chemical Research 56 (6), 667-676, 2023 | 17 | 2023 |
Combining solid solution strengthening and second phase strengthening for thinning Li metal foils Z Guo, T Wang, D Wang, H Xu, X Liu, Y Dai, H Yang, Y Huang, W Luo ACS nano 17 (14), 14136-14143, 2023 | 14 | 2023 |
Local structural features of medium-entropy garnet with ultra-long cycle life Y Chen, T Wang, H Chen, WH Kan, W Yin, Z Song, C Wang, J Ma, W Luo, ... Matter 6 (5), 1530-1541, 2023 | 13 | 2023 |
Direct recycling of shorted solid-state electrolytes enabled by targeted recovery T Wang, Z Song, Y Zhang, Y Gao, L Huang, S Lin, W Luo Energy Storage Materials 52, 365-370, 2022 | 11 | 2022 |
Promoting high-voltage stability through local lattice distortion of halide solid electrolytes Z Song, T Wang, H Yang, WH Kan, Y Chen, Q Yu, L Wang, Y Zhang, ... Nature Communications 15 (1), 1481, 2024 | 5 | 2024 |
A Tailored Interface Design for Anode‐Free Solid‐State Batteries J Wen, T Wang, C Wang, Y Dai, Z Song, X Liu, Q Yu, X Zheng, J Ma, ... Advanced Materials 36 (6), 2307732, 2024 | 4 | 2024 |
Enabling the reversibility of anhydrous copper(II) fluoride cathodes for rechargeable lithium batteries via fluorinated high-concentration electrolytes Y Dai, X Liu, W Wu, Y Huang, T Wang, Z Song, R Zhang, W Luo Science China Materials 66 (8), 3039-3045, 2023 | 2 | 2023 |
Solid‐State Batteries: Lithium–Graphite Paste: An Interface Compatible Anode for Solid‐State Batteries (Adv. Mater. 10/2019) J Duan, W Wu, AM Nolan, T Wang, J Wen, C Hu, Y Mo, W Luo, Y Huang Advanced Materials 31 (10), 1970068, 2019 | 2 | 2019 |
Metal chloride cathodes for next-generation rechargeable lithium batteries Y Dai, S Zhang, J Wen, Z Song, T Wang, R Zhang, X Fan, W Luo Iscience, 2024 | | 2024 |
An Active Halide Catholyte Boosts the Extra Capacity for all‐Solid‐State Batteries Z Song, Y Dai, T Wang, Q Yu, X Ye, L Wang, Y Zhang, S Wang, W Luo Advanced Materials, 2405277, 0 | | |