Progress and perspective of ceramic/polymer composite solid electrolytes for lithium batteries S Li, SQ Zhang, L Shen, Q Liu, JB Ma, W Lv, YB He, QH Yang Advanced Science 7 (5), 1903088, 2020 | 706 | 2020 |
Cross-linked beta alumina nanowires with compact gel polymer electrolyte coating for ultra-stable sodium metal battery D Lei, YB He, H Huang, Y Yuan, G Zhong, Q Zhao, X Hao, D Zhang, C Lai, ... Nature communications 10 (1), 4244, 2019 | 279 | 2019 |
A dielectric electrolyte composite with high lithium-ion conductivity for high-voltage solid-state lithium metal batteries P Shi, J Ma, M Liu, S Guo, Y Huang, S Wang, L Zhang, L Chen, K Yang, ... Nature Nanotechnology 18 (6), 602-610, 2023 | 248 | 2023 |
Constructing Multifunctional Interphase between Li1.4Al0.4Ti1.6(PO4)3 and Li Metal by Magnetron Sputtering for Highly Stable Solid‐State Lithium Metal Batteries X Hao, Q Zhao, S Su, S Zhang, J Ma, L Shen, Q Yu, L Zhao, Y Liu, F Kang, ... Advanced Energy Materials 9 (34), 1901604, 2019 | 226 | 2019 |
Constructing a Stable Interface Layer by Tailoring Solvation Chemistry in Carbonate Electrolytes for High‐Performance Lithium‐Metal Batteries Z Piao, P Xiao, R Luo, J Ma, R Gao, C Li, J Tan, K Yu, G Zhou, HM Cheng Advanced Materials 34 (8), 2108400, 2022 | 220 | 2022 |
Stable Interface Chemistry and Multiple Ion Transport of Composite Electrolyte Contribute to Ultra‐long Cycling Solid‐State LiNi0.8Co0.1Mn0.1O2/Lithium Metal … K Yang, L Chen, J Ma, C Lai, Y Huang, J Mi, J Biao, D Zhang, P Shi, H Xia, ... Angewandte Chemie International Edition 60 (46), 24668-24675, 2021 | 181 | 2021 |
Cobalt-doping of molybdenum disulfide for enhanced catalytic polysulfide conversion in lithium–sulfur batteries W Liu, C Luo, S Zhang, B Zhang, J Ma, X Wang, W Liu, Z Li, QH Yang, ... ACS nano 15 (4), 7491-7499, 2021 | 181 | 2021 |
Lamellar MXene composite aerogels with sandwiched carbon nanotubes enable stable lithium–sulfur batteries with a high sulfur loading B Zhang, C Luo, G Zhou, ZZ Pan, J Ma, H Nishihara, YB He, F Kang, W Lv, ... Advanced Functional Materials 31 (26), 2100793, 2021 | 168 | 2021 |
Lithium hexamethyldisilazide as electrolyte additive for efficient cycling of high-voltage non-aqueous lithium metal batteries D Zhang, M Liu, J Ma, K Yang, Z Chen, K Li, C Zhang, Y Wei, M Zhou, ... Nature communications 13 (1), 6966, 2022 | 120 | 2022 |
Multicomponent copper‐zinc alloy layer enabling ultra‐stable zinc metal anode of aqueous Zn‐ion battery B Li, K Yang, J Ma, P Shi, L Chen, C Chen, X Hong, X Cheng, MC Tang, ... Angewandte Chemie 134 (47), e202212587, 2022 | 113 | 2022 |
Progress and perspective of Li1 + xAlxTi2‐x(PO4)3 ceramic electrolyte in lithium batteries K Yang, L Chen, J Ma, YB He, F Kang InfoMat 3 (11), 1195-1217, 2021 | 106 | 2021 |
Flexible Zinc–Air Batteries with Ampere‐Hour Capacities and Wide‐Temperature Adaptabilities X Zhong, Z Zheng, J Xu, X Xiao, C Sun, M Zhang, J Ma, B Xu, K Yu, ... Advanced Materials 35 (13), 2209980, 2023 | 101 | 2023 |
Topology crafting of polyvinylidene difluoride electrolyte creates ultra-long cycling high-voltage lithium metal solid-state batteries J Mi, J Ma, L Chen, C Lai, K Yang, J Biao, H Xia, X Song, W Lv, G Zhong, ... Energy Storage Materials 48, 375-383, 2022 | 99 | 2022 |
Progress and perspective of the cathode/electrolyte interface construction in all‐solid‐state lithium batteries S Su, J Ma, L Zhao, K Lin, Q Li, S Lv, F Kang, YB He Carbon Energy 3 (6), 866-894, 2021 | 91 | 2021 |
Progress on lithium dendrite suppression strategies from the interior to exterior by hierarchical structure designs L Shen, P Shi, X Hao, Q Zhao, J Ma, YB He, F Kang Small 16 (26), 2000699, 2020 | 86 | 2020 |
A functionalized carbon surface for high‐performance sodium‐ion storage Q Lin, J Zhang, W Lv, J Ma, Y He, F Kang, QH Yang Small 16 (15), 1902603, 2020 | 84 | 2020 |
Nonflammable, localized high-concentration electrolyte towards a high-safety lithium metal battery C Zhang, S Gu, D Zhang, J Ma, H Zheng, M Zheng, R Lv, K Yu, J Wu, ... Energy Storage Materials 52, 355-364, 2022 | 83 | 2022 |
Expanded-graphite embedded in lithium metal as dendrite-free anode of lithium metal batteries Q Zhao, X Hao, S Su, J Ma, Y Hu, Y Liu, F Kang, YB He Journal of Materials Chemistry A 7 (26), 15871-15879, 2019 | 81 | 2019 |
Constructing a highly efficient “solid–polymer–solid” elastic ion transport network in cathodes activates the room temperature performance of all-solid-state lithium batteries J Ma, G Zhong, P Shi, Y Wei, K Li, L Chen, X Hao, Q Li, K Yang, C Wang, ... Energy & Environmental Science 15 (4), 1503-1511, 2022 | 68 | 2022 |
In situ construction of Li3N-enriched interface enabling ultra-stable solid-state LiNi0. 8Co0. 1Mn0. 1O2/lithium metal batteries L Chen, T Gu, J Ma, K Yang, P Shi, J Biao, J Mi, M Liu, W Lv, YB He Nano Energy 100, 107470, 2022 | 64 | 2022 |