CO 2 photo-reduction: insights into CO 2 activation and reaction on surfaces of photocatalysts X Chang, T Wang, J Gong Energy & Environmental Science 9 (7), 2177-2196, 2016 | 1721 | 2016 |
Enhanced Surface Reaction Kinetics and Charge Separation of p–n Heterojunction Co3O4/BiVO4 Photoanodes X Chang, T Wang, P Zhang, J Zhang, A Li, J Gong Journal of the American Chemical Society 137 (26), 8356-8359, 2015 | 810 | 2015 |
Synergism of Geometric Construction and Electronic Regulation: 3D Se‐(NiCo)Sx/(OH)x Nanosheets for Highly Efficient Overall Water Splitting C Hu, L Zhang, ZJ Zhao, A Li, X Chang, J Gong Advanced Materials 30 (12), 1705538, 2018 | 343 | 2018 |
Effective charge carrier utilization in photocatalytic conversions P Zhang, T Wang, X Chang, J Gong Accounts of chemical research 49 (5), 911-921, 2016 | 294 | 2016 |
Speciation of Cu surfaces during the electrochemical CO reduction reaction Y Zhao, X Chang, AS Malkani, X Yang, L Thompson, F Jiao, B Xu Journal of the American Chemical Society 142 (21), 9735-9743, 2020 | 266 | 2020 |
The Development of Cocatalysts for Photoelectrochemical CO2 Reduction X Chang, T Wang, P Yang, G Zhang, J Gong Advanced Materials 31 (31), 1804710, 2019 | 262 | 2019 |
Synergistic Cocatalytic Effect of Carbon Nanodots and Co3O4 Nanoclusters for the Photoelectrochemical Water Oxidation on Hematite P Zhang, T Wang, X Chang, L Zhang, J Gong Angewandte Chemie 128 (19), 5945-5949, 2016 | 223 | 2016 |
Stable Aqueous Photoelectrochemical CO2 Reduction by a Cu2O Dark Cathode with Improved Selectivity for Carbonaceous Products X Chang, T Wang, P Zhang, Y Wei, J Zhao, J Gong Angewandte Chemie International Edition 55 (31), 8840-8845, 2016 | 217 | 2016 |
Tuning Cu/Cu2O Interfaces for the Reduction of Carbon Dioxide to Methanol in Aqueous Solutions X Chang, T Wang, ZJ Zhao, P Yang, J Greeley, R Mu, G Zhang, Z Gong, ... Angewandte Chemie International Edition 57 (47), 15415-15419, 2018 | 205 | 2018 |
Thin heterojunctions and spatially separated cocatalysts to simultaneously reduce bulk and surface recombination in photocatalysts A Li, X Chang, Z Huang, C Li, Y Wei, L Zhang, T Wang, J Gong Angewandte Chemie 128 (44), 13938-13942, 2016 | 186 | 2016 |
Surviving High‐Temperature Calcination: ZrO2‐Induced Hematite Nanotubes for Photoelectrochemical Water Oxidation C Li, A Li, Z Luo, J Zhang, X Chang, Z Huang, T Wang, J Gong Angewandte Chemie 129 (15), 4214-4219, 2017 | 178 | 2017 |
Computational and experimental demonstrations of one-pot tandem catalysis for electrochemical carbon dioxide reduction to methane H Zhang, X Chang, JG Chen, WA Goddard III, B Xu, MJ Cheng, Q Lu Nature communications 10 (1), 3340, 2019 | 174 | 2019 |
Low‐coordinated edge sites on ultrathin palladium nanosheets boost carbon dioxide electroreduction performance W Zhu, L Zhang, P Yang, C Hu, Z Luo, X Chang, ZJ Zhao, J Gong Angewandte Chemie International Edition 57 (36), 11544-11548, 2018 | 160 | 2018 |
2022 roadmap on low temperature electrochemical CO2 reduction IEL Stephens, K Chan, A Bagger, SW Boettcher, J Bonin, E Boutin, ... Journal of Physics: Energy 4 (4), 042003, 2022 | 145 | 2022 |
Homogeneous Cu2O pn junction photocathodes for solar water splitting T Wang, Y Wei, X Chang, C Li, A Li, S Liu, J Zhang, J Gong Applied Catalysis B: Environmental 226, 31-37, 2018 | 136 | 2018 |
Spatial separation of oxidation and reduction co-catalysts for efficient charge separation: Pt@ TiO 2@ MnO x hollow spheres for photocatalytic reactions A Li, T Wang, X Chang, W Cai, P Zhang, J Zhang, J Gong Chemical Science 7 (2), 890-895, 2016 | 132 | 2016 |
Morphological and Compositional Design of Pd–Cu Bimetallic Nanocatalysts with Controllable Product Selectivity toward CO2 Electroreduction W Zhu, L Zhang, P Yang, X Chang, H Dong, A Li, C Hu, Z Huang, ZJ Zhao, ... Small 14 (7), 1703314, 2018 | 130 | 2018 |
Spatial control of cocatalysts and elimination of interfacial defects towards efficient and robust CIGS photocathodes for solar water splitting M Chen, Y Liu, C Li, A Li, X Chang, W Liu, Y Sun, T Wang, J Gong Energy & Environmental Science 11 (8), 2025-2034, 2018 | 127 | 2018 |
Oxygen induced promotion of electrochemical reduction of CO2 via co-electrolysis M He, C Li, H Zhang, X Chang, JG Chen, WA Goddard III, M Cheng, B Xu, ... Nature communications 11 (1), 3844, 2020 | 125 | 2020 |
Understanding the electric and nonelectric field components of the cation effect on the electrochemical CO reduction reaction AS Malkani, J Li, NJ Oliveira, M He, X Chang, B Xu, Q Lu Science Advances 6 (45), eabd2569, 2020 | 119 | 2020 |