A new aluminium-ion battery with high voltage, high safety and low cost H Sun, W Wang, Z Yu, Y Yuan, S Wang, S Jiao Chemical Communications 51 (59), 11892-11895, 2015 | 487 | 2015 |
A Novel Aluminum‐Ion Battery: Al/AlCl3‐[EMIm]Cl/Ni3S2@Graphene S Wang, Z Yu, J Tu, J Wang, D Tian, Y Liu, S Jiao Advanced Energy Materials 6 (13), 1600137, 2016 | 438 | 2016 |
High-performance aluminum-ion battery with CuS@ C microsphere composite cathode S Wang, S Jiao, J Wang, HS Chen, D Tian, H Lei, DN Fang ACS nano 11 (1), 469-477, 2017 | 424 | 2017 |
A chemically self-charging aqueous zinc-ion battery Y Zhang, F Wan, S Huang, S Wang, Z Niu, J Chen Nature communications 11 (1), 2199, 2020 | 306 | 2020 |
Non‐Metal Ion Co‐Insertion Chemistry in Aqueous Zn/MnO2 Batteries S Wang, Z Yuan, X Zhang, S Bi, Z Zhou, J Tian, Q Zhang, Z Niu Angewandte Chemie 133 (13), 7132-7136, 2021 | 206 | 2021 |
Engineering Active Sites of Polyaniline for AlCl2+ Storage in an Aluminum‐Ion Battery S Wang, S Huang, M Yao, Y Zhang, Z Niu Angewandte Chemie International Edition 59 (29), 11800-11807, 2020 | 172 | 2020 |
An ultralow temperature aqueous battery with proton chemistry F Yue, Z Tie, S Deng, S Wang, M Yang, Z Niu Angewandte Chemie International Edition 60 (25), 13882-13886, 2021 | 159 | 2021 |
Porous CuO microsphere architectures as high-performance cathode materials for aluminum-ion batteries X Zhang, G Zhang, S Wang, S Li, S Jiao Journal of Materials Chemistry A 6 (7), 3084-3090, 2018 | 146 | 2018 |
A Novel Ultrafast Rechargeable Multi-Ions Battery. S Wang, S Jiao, D Tian, HS Chen, H Jiao, J Tu, Y Liu, DN Fang Advanced Materials (Deerfield Beach, Fla.) 29 (16), 2017 | 123 | 2017 |
A rechargeable aqueous manganese-ion battery based on intercalation chemistry S Bi, S Wang, F Yue, Z Tie, Z Niu Nature communications 12 (1), 6991, 2021 | 121 | 2021 |
Scalable 3D self‐assembly of MXene films for flexible sandwich and microsized supercapacitors Z Zhao, S Wang, F Wan, Z Tie, Z Niu Advanced Functional Materials 31 (23), 2101302, 2021 | 110 | 2021 |
Flower‐like Vanadium Suflide/Reduced Graphene Oxide Composite: An Energy Storage Material for Aluminum‐Ion Batteries X Zhang, S Wang, J Tu, G Zhang, S Li, D Tian, S Jiao ChemSusChem 11 (4), 709-715, 2018 | 110 | 2018 |
A novel dual-graphite aluminum-ion battery S Wang, S Jiao, WL Song, HS Chen, J Tu, D Tian, H Jiao, C Fu, DN Fang Energy Storage Materials 12, 119-127, 2018 | 109 | 2018 |
A Universal Compensation Strategy to Anchor Polar Organic Molecules in Bilayered Hydrated Vanadates for Promoting Aqueous Zinc‐Ion Storage F Wan, Z Hao, S Wang, Y Ni, J Zhu, Z Tie, S Bi, Z Niu, J Chen Advanced Materials 33 (36), 2102701, 2021 | 105 | 2021 |
Facile synthesis of nanorod-like single crystalline Na0. 44MnO2 for high performance sodium-ion batteries P Zhan, S Wang, Y Yuan, K Jiao, S Jiao Journal of The Electrochemical Society 162 (6), A1028, 2015 | 71 | 2015 |
Electrochemical deposition of carbon in LiCl–NaCl–Na2CO3 melts J Ge, S Wang, L Hu, J Zhu, S Jiao Carbon 98, 649-657, 2016 | 61 | 2016 |
Sodium modified molybdenum sulfide via molten salt electrolysis as an anode material for high performance sodium-ion batteries S Wang, J Tu, Y Yuan, R Ma, S Jiao Physical Chemistry Chemical Physics 18 (4), 3204-3213, 2016 | 56 | 2016 |
Sodium‐Ion and Polyaniline Co‐Intercalation into Ammonium Vanadate Nanoarrays Induced Enlarged Interlayer Spacing as High‐Capacity and Stable Cathodes for Flexible Aqueous Zinc … S Zhao, S Wang, J Guo, L Li, C Li, Y Sun, P Xue, D Wu, L Wei, Y Wang, ... Advanced Functional Materials 33 (48), 2305700, 2023 | 50 | 2023 |
The electrochemical performance of Cu3 [Fe (CN) 6] 2 as a cathode material for sodium-ion batteries S Jiao, J Tuo, H Xie, Z Cai, S Wang, J Zhu Materials Research Bulletin 86, 194-200, 2017 | 49 | 2017 |
Direct preparation of titanium alloys from Ti-bearing blast furnace slag H Jiao, D Tian, S Wang, J Zhu, S Jiao Journal of The Electrochemical Society 164 (7), D511, 2017 | 44 | 2017 |