The research group has been extensively involved in the development of advanced carbon functional materials, interface control, in-situ spectroscopic methods, and the investigation of catalyst electronic structures. With a focus on environmental sustainability and efficient resource utilization, our commitment lies in developing mesoporous carbon-supported metal catalysts based on strategies for controlling transition metal electronic structures. These catalysts find application in the exploration of fine chemical synthesis systems (such as selective oxidation, selective hydrogenation, C-H bond functionalization, etc.), aiming to achieve:
89. Wuxing Hua#; Tongxin Shang#; Huan Li#; Yafei Sun#; Yong Guo; Jingyi Xia; Chuannan Geng; Zhonghao Hu; Linkai Peng; Zhiyuan Han; Chen Zhang ; Wei Lv *; Ying Wan*; Optimizing the p charge of S in p-block metal sulfides for sulfur reduction electrocatalysis, Nature Catalysis, 2023, 6, 174-184.
88.Chun Pei; Shangjun Chen*; Rongrong Song; Fei Lv; Ying Wan*, The self-assembly of gold nanoparticles in large-pore ordered mesoporous carbons, Chinese Journal of Chemical Engineering, 2022, 41, 420-429.
87.Yang Yang#; Xiaojuan Zhu#; Lili Wang#; Junyu Lang; Guohua Yao; Tian Qin, Zhouhong Ren; Liwei Chen; Xi Liu*; Wei Li*; Ying Wan*, Breaking scaling relationships in alkynol semi-hydrogenation by manipulating interstitial atoms in Pd with d-electron gain, Nature Communications, 2022, 13, 2754.