论文著作:
(1) Ni-Zn Dual Sites Switch the CO2 Hydrogenation Selectivity via Tuning of the d-Band Center Lin, Shuangxi; Wang, Qiang; Li, Maoshuai; Hao, Ziwen; Pan, Yutong; Han, Xiaoyu; Chang, Xiao; Huang, Shouying; Li, Zhenhua; Ma, Xinbin;ACS CATALYSIS,2022, 12, 6:3346-3356
(2) Synergetic Interaction between Single-Atom Cu and Ga2O3 Enhances CO2 Hydrogenation to Methanol over CuGaZrOx;Han, Xiaoyu; Xiao, Tiantian; Li, Maoshuai; Hao, Ziwen; Chen, Jiyi; Pan, Yutong; Zi, Xiaohui; Zhang, Heng; Xi, Shibo; Wai, Hui Ming; Kawi, Sibudjing; Ma, Xinbin ACS CATALYSIS 2023, 3, 20:13679-3690
(3) Boosting the hydroformylation activity of a Rh/Ce02 single atom catalyst by tuning surface deficiencies Zheng, Ying; Wang, Qiang; Yang, Qi; Wang, Sikai; Hulsey, Max Joshua; Ding, Shipeng; Furukawa, Shinya; Li, Maoshuai; Yan, Ning; Ma, Xinbin;ACS CATALYSIS 2024, 13,11: 7243-7255
(4) Decoupling the effect of Ni particle size and surface oxygen deficiencies in CO2 methanation over ceria supported Ni Hao, Ziwen; Shen, Jindong; Lin, Shuangxi; Han, Xiaoyu; Chang, Xiao; Liu, Jie; Li, Maoshuai; Ma, Xinbin; APPLIED CATALYSIS B-ENVIRONMENTAL 2021, 286: 119922
(5) Adjacent MnOx clusters enhance the hydroformylation activity of rhodium single-atom catalysts Zheng, Ying; Yang, Qi; Wang, Sikai; Furukawa, Shinya; Li, Maoshuai; Yan, Ning; Ma, Xinbin APPLIED CATALYSIS B-ENVIRONMENTAL 2024, 350: 123923