High entropy oxides for reversible energy storage A Sarkar, L Velasco, DI Wang, Q Wang, G Talasila, L de Biasi, C Kübel, ... Nature communications 9 (1), 3400, 2018 | 898 | 2018 |
High‐entropy oxides: fundamental aspects and electrochemical properties A Sarkar, Q Wang, A Schiele, MR Chellali, SS Bhattacharya, D Wang, ... Advanced Materials 31 (26), 1806236, 2019 | 778 | 2019 |
High-entropy energy materials: challenges and new opportunities Y Ma, Y Ma, Q Wang, S Schweidler, M Botros, T Fu, H Hahn, ... Energy & Environmental Science 14 (5), 2883-2905, 2021 | 433 | 2021 |
A lithium anode protection guided highly-stable lithium–sulfur battery G Ma, Z Wen, M Wu, C Shen, Q Wang, J Jin, X Wu Chemical communications 50 (91), 14209-14212, 2014 | 418 | 2014 |
Multi-anionic and-cationic compounds: new high entropy materials for advanced Li-ion batteries Q Wang, A Sarkar, D Wang, L Velasco, R Azmi, SS Bhattacharya, ... Energy & Environmental Science 12 (8), 2433-2442, 2019 | 316 | 2019 |
A shuttle effect free lithium sulfur battery based on a hybrid electrolyte Q Wang, J Jin, X Wu, G Ma, J Yang, Z Wen Physical Chemistry Chemical Physics 16 (39), 21225-21229, 2014 | 203 | 2014 |
Enhanced performance of lithium sulfur battery with self-assembly polypyrrole nanotube film as the functional interlayer G Ma, Z Wen, Q Wang, C Shen, P Peng, J Jin, X Wu Journal of Power Sources 273, 511-516, 2015 | 187 | 2015 |
An in situ element permeation constructed high endurance Li–LLZO interface at high current densities Y Lu, X Huang, Y Ruan, Q Wang, R Kun, J Yang, Z Wen Journal of Materials Chemistry A 6 (39), 18853-18858, 2018 | 182 | 2018 |
High entropy oxides as anode material for Li-ion battery applications: A practical approach Q Wang, A Sarkar, Z Li, Y Lu, L Velasco, SS Bhattacharya, T Brezesinski, ... Electrochemistry Communications 100, 121-125, 2019 | 175 | 2019 |
High‐entropy metal–organic frameworks for highly reversible sodium storage Y Ma, Y Ma, SL Dreyer, Q Wang, K Wang, D Goonetilleke, A Omar, ... Advanced Materials 33 (34), 2101342, 2021 | 167 | 2021 |
Enhanced cycle performance of a Li–S battery based on a protected lithium anode G Ma, Z Wen, Q Wang, C Shen, J Jin, X Wu Journal of Materials Chemistry A 2 (45), 19355-19359, 2014 | 149 | 2014 |
Highly stable garnet solid electrolyte based Li-S battery with modified anodic and cathodic interfaces Y Lu, X Huang, Z Song, K Rui, Q Wang, S Gu, J Yang, T Xiu, ME Badding, ... Energy Storage Materials 15, 282-290, 2018 | 138 | 2018 |
A gel-ceramic multi-layer electrolyte for long-life lithium sulfur batteries Q Wang, Z Wen, J Jin, J Guo, X Huang, J Yang, C Chen Chemical communications 52 (8), 1637-1640, 2016 | 135 | 2016 |
Manipulating Li2O atmosphere for sintering dense Li7La3Zr2O12 solid electrolyte X Huang, Y Lu, Z Song, K Rui, Q Wang, T Xiu, ME Badding, Z Wen Energy Storage Materials 22, 207-217, 2019 | 132 | 2019 |
Enhanced performance of lithium sulfur batteries with conductive polymer modified separators G Ma, F Huang, Z Wen, Q Wang, X Hong, J Jin, X Wu Journal of Materials Chemistry A 4 (43), 16968-16974, 2016 | 119 | 2016 |
Synergy of cations in high entropy oxide lithium ion battery anode K Wang, W Hua, X Huang, D Stenzel, J Wang, Z Ding, Y Cui, Q Wang, ... Nature Communications 14 (1), 1487, 2023 | 108 | 2023 |
High‐entropy sulfides as electrode materials for Li‐ion batteries L Lin, K Wang, A Sarkar, C Njel, G Karkera, Q Wang, R Azmi, M Fichtner, ... Advanced energy materials 12 (8), 2103090, 2022 | 102 | 2022 |
Lithium containing layered high entropy oxide structures J Wang, Y Cui, Q Wang, K Wang, X Huang, D Stenzel, A Sarkar, R Azmi, ... Scientific reports 10 (1), 18430, 2020 | 79 | 2020 |
Electronic and ionic co-conductive coating on the separator towards high-performance lithium–sulfur batteries Q Wang, Z Wen, J Yang, J Jin, X Huang, X Wu, J Han Journal of Power Sources 306, 347-353, 2016 | 77 | 2016 |
Suppressing the dissolution of polysulfides with cosolvent fluorinated diether towards high-performance lithium sulfur batteries S Gu, R Qian, J Jin, Q Wang, J Guo, S Zhang, S Zhuo, Z Wen Physical Chemistry Chemical Physics 18 (42), 29293-29299, 2016 | 70 | 2016 |