Bio-gel derived nickel/carbon nanocomposites with enhanced microwave absorption P Xie, H Li, B He, F Dang, J Lin, R Fan, C Hou, H Liu, J Zhang, Y Ma, ... Journal of Materials Chemistry C 6 (32), 8812-8822, 2018 | 329 | 2018 |
Highly Efficient Nb2C MXene Cathode Catalyst with Uniform O‐Terminated Surface for Lithium–Oxygen Batteries G Li, N Li, S Peng, B He, J Wang, Y Du, W Zhang, K Han, F Dang Advanced Energy Materials 11 (1), 2002721, 2021 | 192 | 2021 |
MoSe2@CNT Core–Shell Nanostructures as Grain Promoters Featuring a Direct Li2O2 Formation/Decomposition Catalytic Capability in Lithium‐Oxygen Batteries B He, G Li, J Li, J Wang, H Tong, Y Fan, W Wang, S Sun, F Dang Advanced Energy Materials 11 (18), 2003263, 2021 | 110 | 2021 |
Superassembly of Porous Fetet(NiFe)octO Frameworks with Stable Octahedron and Multistage Structure for Superior Lithium–Oxygen Batteries B He, J Wang, J Liu, Y Li, Q Huang, Y Hou, G Li, J Li, R Zhang, J Zhou, ... Advanced Energy Materials 10 (21), 1904262, 2020 | 78 | 2020 |
Mesoporous CoO/Co–N–C nanofibers as efficient cathode catalysts for Li–O 2 batteries B He, J Wang, Y Fan, Y Jiang, Y Zhai, Y Wang, Q Huang, F Dang, ... Journal of Materials Chemistry A 6 (39), 19075-19084, 2018 | 49 | 2018 |
Nanowires embedded porous TiO2@ C nanocomposite anodes for enhanced stable lithium and sodium ion battery performance Y Wang, N Li, C Hou, B He, J Li, F Dang, J Wang, Y Fan Ceramics International 46 (7), 9119-9128, 2020 | 38 | 2020 |
A hierarchical porous carbon supported Pd@ Pd4S heterostructure as an efficient catalytic material positive electrode for Li–O2 batteries Q Huang, F Dang, H Zhu, L Zhao, B He, Y Wang, J Wang, X Mai Journal of Power Sources 451, 227738, 2020 | 36 | 2020 |
Novel MoSi 2 catalysts featuring surface activation as highly efficient cathode materials for long-life Li–O 2 batteries C Dang, Y Wang, B He, W Zhang, F Dang, H Wang, Y Du Journal of Materials Chemistry A 8 (1), 259-267, 2020 | 31 | 2020 |
Heterostructure necklace-like NiO-NiCo2O4 hybrid with superior catalytic capability as electrocatalyst for Li-O2 batteries Z Mohamed, G Zhang, B He, Y Fan Engineered Science 17 (5), 231-241, 2021 | 24 | 2021 |
Insights into Ion Occupancy Manipulation of Fe–Co Oxide Free-Standing Cathodes for Li–O2 Batteries with Enhanced Deep Charge Capability and Long-Term … Q Huang, B He, W Zhang, J Wang, Y Fan, X Mai, Y Wang, Y Hou, Y Du, ... ACS applied materials & interfaces 12 (27), 30268-30279, 2020 | 19 | 2020 |
Li–O2 Batteries: MoSe2@CNT Core–Shell Nanostructures as Grain Promoters Featuring a Direct Li2O2 Formation/Decomposition Catalytic Capability in Lithium … B He, G Li, J Li, J Wang, H Tong, Y Fan, W Wang, S Sun, F Dang Advanced Energy Materials 11 (18), 2170069, 2021 | | 2021 |
Novel MoSi₂ catalysts featuring surface activation as highly efficient cathode materials for long-life Li–O₂ batteries C Dang, Y Wang, B He, W Zhang, F Dang, H Wang, Y Du | | 2019 |
Heterostructure Necklace-like NiO-NiCo 2 O 4 Hybrid with Superior Catalytic Capability as Electrocatalyst for Li-Oxygen Batteries Z Mohamed, G Zhang, B He, Y Fan | | |