祝贺任厚安同学论文发表在J. Energy Chem.期刊上
In-situ constructing Cu1Bi1 bimetallic catalyst to promote the electroreduction of CO2 to formate by synergistic electronic and geometric effects
Houan Ren, Xiaoyu Wang, Xiaomei Zhou, Teng Wang, Yuping Liu, Cai Wang, Qingxin Guan,* and Wei Li,* J. Energy Chem., 2023, 79, 263-271. https://doi.org/10.1016/j.jechem.2023.01.017
Electrochemical CO
2 reduction to formate is a potential approach to achieving global carbon neutrality.
Here, Cu1Bi1 bimetallic catalyst was prepared by a co-precipitation method. It has a ginger like composite
structure (CuO/CuBi
2O
4) and exhibited a high formate faradaic efficiency of 98.07% at –0.98 V and a large
current density of –56.12 mAcm
2 at –1.28 V, which is twice as high as Bi
2O
3 catalyst. Especially, high
selectivity (FEHCOO
– > 85%) is maintained over a wide potential window of 500 mV. In-situ Raman measurements and structure characterization revealed that the reduced Cu1Bi1 bimetallic catalyst possesses
abundant Cu-Bi interfaces and residual Bi-O structures. The abundant Cu-Bi interface structures on the
catalyst surface can provide abundant active sites for CO
2RR, while the Bi-O structures may stabilize
the CO
2*– intermediate. The synergistic effect of abundant Cu-Bi interfaces and Bi-O species promotes
the efficient synthesis of formate by following the OCHO* pathway.