Highly ordered mesoporous MoS2 with expanded spacing of the (002) crystal plane for ultrafast lithium ion storage H Liu, D Su, R Zhou, B Sun, G Wang*, SZ Qiao* Advanced Energy Materials 2 (8), 970-975, 2012 | 502 | 2012 |
“Superaerophobic” nickel phosphide nanoarray catalyst for efficient hydrogen evolution at ultrahigh current densities X Yu, ZY Yu, XL Zhang, YR Zheng, Y Duan, Q Gao, R Wu, B Sun, ... Journal of the American Chemical Society 141 (18), 7537-7543, 2019 | 436 | 2019 |
Highly efficient and large-scale synthesis of graphene by electrolytic exfoliation G Wang, B Wang, J Park, Y Wang, B Sun, J Yao Carbon 47 (14), 3242-3246, 2009 | 407 | 2009 |
Porous graphene nanoarchitectures: an efficient catalyst for low charge-overpotential, long life, and high capacity lithium–oxygen batteries B Sun, X Huang, S Chen, P Munroe, G Wang* Nano letters 14 (6), 3145-3152, 2014 | 362 | 2014 |
Synthesis of mesoporous α-Fe2O3 nanostructures for highly sensitive gas sensors and high capacity anode materials in lithium ion batteries B Sun, J Horvat, HS Kim, WS Kim, J Ahn, G Wang* The Journal of Physical Chemistry C 114 (44), 18753-18761, 2010 | 353 | 2010 |
MnO/C core–shell nanorods as high capacity anode materials for lithium-ion batteries B Sun, Z Chen, HS Kim, H Ahn, G Wang* Journal of Power Sources 196 (6), 3346-3349, 2011 | 330 | 2011 |
Dendrite‐Free Sodium‐Metal Anodes for High‐Energy Sodium‐Metal Batteries B Sun, P Li, J Zhang, D Wang*, P Munroe, C Wang, PHL Notten, G Wang* Advanced Materials 30 (29), 1801334, 2018 | 316 | 2018 |
Graphene nanosheets as cathode catalysts for lithium-air batteries with an enhanced electrochemical performance B Sun, B Wang, D Su, L Xiao, H Ahn, G Wang* Carbon 50 (2), 727-733, 2012 | 307 | 2012 |
Graphene-Co 3 O 4 nanocomposite as electrocatalyst with high performance for oxygen evolution reaction Y Zhao, S Chen, B Sun, D Su, X Huang, H Liu, Y Yan*, K Sun*, G Wang* Scientific reports 5, 7629, 2015 | 292 | 2015 |
Temperature‐Dependent Nucleation and Growth of Dendrite‐Free Lithium Metal Anodes K Yan, J Wang, S Zhao, D Zhou, B Sun*, Y Cui*, G Wang* Angewandte Chemie 131 (33), 11486-11490, 2019 | 277 | 2019 |
MXene‐Based Dendrite‐Free Potassium Metal Batteries X Tang, D Zhou*, P Li, X Guo, B Sun, H Liu, K Yan, Y Gogotsi*, G Wang* Advanced Materials 32 (4), 1906739, 2020 | 274 | 2020 |
Design Strategies to Enable the Efficient Use of Sodium Metal Anodes in High‐Energy Batteries B Sun+*, P Xiong+, U Maitra, D Langsdorf, K Yan, C Wang, J Janek, ... Advanced Materials, 1903891, 2020 | 238 | 2020 |
Honeycomb-like porous gel polymer electrolyte membrane for lithium ion batteries with enhanced safety J Zhang, B Sun, X Huang, S Chen, G Wang* Scientific reports 4, 6007, 2014 | 228 | 2014 |
Sn@ CNT nanopillars grown perpendicularly on carbon paper: a novel free-standing anode for sodium ion batteries X Xie, K Kretschmer, J Zhang, B Sun, D Su, G Wang* Nano Energy 13, 208-217, 2015 | 221 | 2015 |
Revitalising sodium–sulfur batteries for non-high-temperature operation: a crucial review Y Wang+, D Zhou+, V Palomares+, D Shanmukaraj+, B Sun, X Tang, ... Energy & Environmental Science 13 (11), 3848-3879, 2020 | 214 | 2020 |
Ruthenium nanocrystals as cathode catalysts for lithium-oxygen batteries with a superior performance B Sun, P Munroe, G Wang* Scientific reports 3, 2247, 2013 | 202 | 2013 |
Reaction Mechanisms of Layered Lithium‐Rich Cathode Materials for High‐Energy Lithium‐Ion Batteries S Zhao, K Yan, J Zhang, B Sun*, G Wang* Angewandte Chemie International Edition 60 (5), 2208-2220, 2021 | 193 | 2021 |
Towards High-energy-density Lithium-ion Batteries: Strategies for Developing High-capacity Lithium-rich Cathode Materials S Zhao, Z Guo, K Yan, S Wan, F He, B Sun*, G Wang* Energy Storage Materials, 2020 | 189 | 2020 |
Mesoporous carbon nanocube architecture for high‐performance lithium–oxygen batteries B Sun, S Chen, H Liu, G Wang* Advanced Functional Materials 25 (28), 4436-4444, 2015 | 179 | 2015 |
Hierarchical 3D mesoporous silicon@ graphene nanoarchitectures for lithium ion batteries with superior performance S Chen, P Bao, X Huang, B Sun, G Wang* Nano Research 7 (1), 85-94, 2014 | 179 | 2014 |