Exploring the ternary interactions in Cu–ZnO–ZrO2 catalysts for efficient CO2 hydrogenation to methanol Y Wang, S Kattel, W Gao, K Li, P Liu, JG Chen, H Wang Nature communications 10 (1), 1166, 2019 | 374 | 2019 |
Designed oxygen carriers from macroporous LaFeO3 supported CeO2 for chemical-looping reforming of methane Y Zheng, K Li, H Wang, D Tian, Y Wang, X Zhu, Y Wei, M Zheng, Y Luo Applied Catalysis B: Environmental 202, 51-63, 2017 | 342 | 2017 |
CO2 Hydrogenation to Methanol over ZrO2-Containing Catalysts: Insights into ZrO2 Induced Synergy K Li, JG Chen ACS catalysis 9 (9), 7840-7861, 2019 | 298 | 2019 |
Ce–Fe oxygen carriers for chemical-looping steam methane reforming X Zhu, Y Wei, H Wang, K Li International journal of hydrogen energy 38 (11), 4492-4501, 2013 | 227 | 2013 |
Syngas production from methane and air via a redox process using Ce–Fe mixed oxides as oxygen carriers K Li, H Wang, Y Wei, D Yan Applied Catalysis B: Environmental 97 (3-4), 361-372, 2010 | 214 | 2010 |
Perovskites as geo-inspired oxygen storage materials for chemical looping and three-way catalysis: a perspective X Zhu, K Li, L Neal, F Li Acs Catalysis 8 (9), 8213-8236, 2018 | 187 | 2018 |
Direct conversion of methane to synthesis gas using lattice oxygen of CeO2–Fe2O3 complex oxides K Li, H Wang, Y Wei, D Yan Chemical Engineering Journal 156 (3), 512-518, 2010 | 169 | 2010 |
Chemical-Looping Steam Methane Reforming over a CeO2–Fe2O3 Oxygen Carrier: Evolution of Its Structure and Reducibility X Zhu, K Li, Y Wei, H Wang, L Sun Energy & fuels 28 (2), 754-760, 2014 | 166 | 2014 |
Structure dependence and reaction mechanism of CO oxidation: a model study on macroporous CeO2 and CeO2-ZrO2 catalysts Y Zheng, K Li, H Wang, Y Wang, D Tian, Y Wei, X Zhu, C Zeng, Y Luo Journal of Catalysis 344, 365-377, 2016 | 159 | 2016 |
Transformation of methane into synthesis gas using the redox property of Ce–Fe mixed oxides: effect of calcination temperature K Li, H Wang, Y Wei, D Yan International journal of hydrogen energy 36 (5), 3471-3482, 2011 | 149 | 2011 |
Chemical‐looping conversion of methane: a review D Li, R Xu, Z Gu, X Zhu, S Qing, K Li Energy Technology 8 (8), 1900925, 2020 | 132 | 2020 |
Strong evidence of the role of H2O in affecting methanol selectivity from CO2 hydrogenation over Cu-ZnO-ZrO2 Y Wang, W Gao, K Li, Y Zheng, Z Xie, W Na, JG Chen, H Wang Chem 6 (2), 419-430, 2020 | 131 | 2020 |
Density functional theory studies of transition metal carbides and nitrides as electrocatalysts D Tian, SR Denny, K Li, H Wang, S Kattel, JG Chen Chemical Society Reviews 50 (22), 12338-12376, 2021 | 128 | 2021 |
Hydrogen and syngas production from two-step steam reforming of methane over CeO2-Fe2O3 oxygen carrier ZHU Xing, W Hua, WEI Yonggang, LI Kongzhai, X Cheng Journal of Rare Earths 28 (6), 907-913, 2010 | 123 | 2010 |
Chemical looping conversion of gaseous and liquid fuels for chemical production: a review D Li, R Xu, X Li, Z Li, X Zhu, K Li Energy & Fuels 34 (5), 5381-5413, 2020 | 121 | 2020 |
Confined Ni-In intermetallic alloy nanocatalyst with excellent coking resistance for methane dry reforming W Liu, L Li, S Lin, Y Luo, Z Bao, Y Mao, K Li, D Wu, H Peng Journal of Energy Chemistry 65, 34-47, 2022 | 112 | 2022 |
Chemical looping reforming of methane using magnetite as oxygen carrier: Structure evolution and reduction kinetics C Lu, K Li, H Wang, X Zhu, Y Wei, M Zheng, C Zeng Applied energy 211, 1-14, 2018 | 111 | 2018 |
Partial oxidation of methane to syngas with air by lattice oxygen transfer over ZrO2-modified Ce–Fe mixed oxides K Li, H Wang, Y Wei, D Yan Chemical engineering journal 173 (2), 574-582, 2011 | 104 | 2011 |
Removal and immobilization of arsenic from copper smelting wastewater using copper slag by in situ encapsulation with silica gel Y Li, X Zhu, X Qi, B Shu, X Zhang, K Li, Y Wei, H Wang Chemical Engineering Journal 394, 124833, 2020 | 100 | 2020 |
Structure–activity relationships of Cu–ZrO 2 catalysts for CO 2 hydrogenation to methanol: interaction effects and reaction mechanism YH Wang, WG Gao, H Wang, YE Zheng, W Na, KZ Li RSC advances 7 (14), 8709-8717, 2017 | 100 | 2017 |