Single-Atomic Cu with Multiple Oxygen Vacancies on Ceria for Electrocatalytic CO2 Reduction to CH4 Y Wang, Z Chen, P Han, Y Du, Z Gu, X Xu, G Zheng ACS Catalysis 8 (8), 7113-7119, 2018 | 555 | 2018 |
Defect and interface engineering for aqueous electrocatalytic CO2 reduction Y Wang, P Han, X Lv, L Zhang, G Zheng Joule 2 (12), 2551-2582, 2018 | 539 | 2018 |
Tuning of CO2 Reduction Selectivity on Metal Electrocatalysts Y Wang, J Liu, Y Wang, AM Al‐Enizi, G Zheng Small 13 (43), 1701809, 2017 | 226 | 2017 |
Efficient solar-driven electrocatalytic CO2 reduction in a redox-medium-assisted system Y Wang, J Liu, Y Wang, Y Wang, G Zheng Nature Communications 9 (1), 5003, 2018 | 106 | 2018 |
Challenges and Opportunities in Electrocatalytic CO2 Reduction to Chemicals and Fuels X She, Y Wang, H Xu, S Chi Edman Tsang, S Ping Lau Angewandte Chemie International Edition 61 (49), e202211396, 2022 | 92 | 2022 |
Defective graphene for electrocatalytic CO2 reduction P Han, X Yu, D Yuan, M Kuang, Y Wang, AM Al-Enizi, G Zheng Journal of colloid and interface science 534, 332-337, 2019 | 84 | 2019 |
2D Assembly of Confined Space toward Enhanced CO2 Electroreduction P Han, Z Wang, M Kuang, Y Wang, J Liu, L Hu, L Qian, G Zheng Advanced Energy Materials 8 (25), 1801230, 2018 | 64 | 2018 |
Pure-water-fed, electrocatalytic CO2 reduction to ethylene beyond 1,000 h stability at 10 A X She, L Zhai, Y Wang, P Xiong, MMJ Li, TS Wu, MC Wong, X Guo, Z Xu, ... Nature Energy 9 (1), 81-91, 2024 | 23 | 2024 |
Carbon-coated nanoparticle superlattices for energy applications J Li, Y Wang, G Zheng Nanoscale 8 (30), 14359-14368, 2016 | 13 | 2016 |