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Hierarchical free‐standing carbon‐nanotube paper electrodes with ultrahigh sulfur‐loading for lithium–sulfur batteries Z Yuan, HJ Peng, JQ Huang, XY Liu, DW Wang, XB Cheng, Q Zhang Advanced Functional Materials 24 (39), 6105-6112, 2014 | 586 | 2014 |
Stable metal battery anodes enabled by polyethylenimine sponge hosts by way of electrokinetic effects G Li, Z Liu, Q Huang, Y Gao, M Regula, D Wang, LQ Chen, D Wang Nature Energy 3 (12), 1076-1083, 2018 | 388 | 2018 |
Low-temperature and high-rate-charging lithium metal batteries enabled by an electrochemically active monolayer-regulated interface Y Gao, T Rojas, K Wang, S Liu, D Wang, T Chen, H Wang, AT Ngo, ... Nature Energy 5 (7), 534-542, 2020 | 375 | 2020 |
Janus separator of polypropylene‐supported cellular graphene framework for sulfur cathodes with high utilization in lithium–sulfur batteries HJ Peng, DW Wang, JQ Huang, XB Cheng, Z Yuan, F Wei, Q Zhang Advanced Science 3 (1), 1500268, 2016 | 375 | 2016 |
3D carbonaceous current collectors: The origin of enhanced cycling stability for high‐sulfur‐loading lithium–sulfur batteries HJ Peng, WT Xu, L Zhu, DW Wang, JQ Huang, XB Cheng, Z Yuan, F Wei, ... Advanced Functional Materials 26 (35), 6351-6358, 2016 | 266 | 2016 |
Exceptionally High Ionic Conductivity in Na3P0.62As0.38S4 with Improved Moisture Stability for Solid‐State Sodium‐Ion Batteries Z Yu, SL Shang, JH Seo, D Wang, X Luo, Q Huang, S Chen, J Lu, X Li, ... Advanced materials 29 (16), 1605561, 2017 | 216 | 2017 |
Self-formed hybrid interphase layer on lithium metal for high-performance lithium–sulfur batteries G Li, Q Huang, X He, Y Gao, D Wang, SH Kim, D Wang ACS nano 12 (2), 1500-1507, 2018 | 177 | 2018 |
Salt‐Based Organic–Inorganic Nanocomposites: Towards A Stable Lithium Metal/Li10GeP2S12 Solid Electrolyte Interface Y Gao, D Wang, YC Li, Z Yu, TE Mallouk, D Wang Angewandte Chemie International Edition 57 (41), 13608-13612, 2018 | 168 | 2018 |
Stable Li metal anode by a polyvinyl alcohol protection layer via modifying solid-electrolyte interphase layer Y Zhao, D Wang, Y Gao, T Chen, Q Huang, D Wang Nano Energy 64, 103893, 2019 | 122 | 2019 |
Stable Li metal anode by a hybrid lithium polysulfidophosphate/polymer cross-linking film Y Zhao, G Li, Y Gao, D Wang, Q Huang, D Wang ACS Energy Letters 4 (6), 1271-1278, 2019 | 116 | 2019 |
Supremely elastic gel polymer electrolyte enables a reliable electrode structure for silicon-based anodes Q Huang, J Song, Y Gao, D Wang, S Liu, S Peng, C Usher, ... Nature communications 10 (1), 5586, 2019 | 109 | 2019 |
Advanced anode for sodium-ion battery with promising long cycling stability achieved by tuning phosphorus-carbon nanostructures Z Yu, J Song, D Wang, D Wang Nano Energy 40, 550-558, 2017 | 109 | 2017 |
A new approach to both high safety and high performance of lithium-ion batteries S Ge, Y Leng, T Liu, RS Longchamps, XG Yang, Y Gao, D Wang, D Wang, ... Science Advances 6 (9), eaay7633, 2020 | 105 | 2020 |
Electrokinetic phenomena enhanced lithium‐ion transport in leaky film for stable lithium metal anodes G Li, Z Liu, D Wang, X He, S Liu, Y Gao, A AlZahrani, SH Kim, LQ Chen, ... Advanced Energy Materials 9 (22), 1900704, 2019 | 105 | 2019 |
Realizing high-capacity all-solid-state lithium-sulfur batteries using a low-density inorganic solid-state electrolyte D Wang, LJ Jhang, R Kou, M Liao, S Zheng, H Jiang, P Shi, GX Li, ... Nature communications 14 (1), 1895, 2023 | 76 | 2023 |
A quaternary sodium superionic conductor-Na10. 8Sn1. 9PS11. 8 Z Yu, SL Shang, Y Gao, D Wang, X Li, ZK Liu, D Wang Nano Energy 47, 325-330, 2018 | 70 | 2018 |
Confining sulfur in porous carbon by vapor deposition to achieve high-performance cathode for all-solid-state lithium–sulfur batteries AS Alzahrani, M Otaki, D Wang, Y Gao, TS Arthur, S Liu, D Wang ACS Energy Letters 6 (2), 413-418, 2021 | 64 | 2021 |
Synthesis and understanding of Na11Sn2PSe12 with enhanced ionic conductivity for all-solid-state Na-ion battery Z Yu, SL Shang, D Wang, YC Li, HP Yennawar, G Li, HT Huang, Y Gao, ... Energy Storage Materials 17, 70-77, 2019 | 61 | 2019 |