Dimetal and duplex heteroatoms co-doped graphene aerogel in electrolytic CO2 reduction to CO in aqueous electrolyte
Hui-Hui Cao , Zhen-Hong He , Pan-Pan Guo , Yue Tian , Xin Wang , Kuan Wang , Weitao Wang , Huan Wang , Zhao-Tie Liu
Chemical Synthesis ›› 2026, Vol. 6 ›› Issue (3) -50.
CO2 electrochemical reduction (CO2ER) is a promising alternative for the conversion of CO2 into green and value-added chemicals. Among these chemicals, CO is an important product and platform molecule of the CO2ER, which is always used to produce various chemicals such as methanol, aldehydes, and synthesis gas (H2/CO). Developing efficient catalytic systems for the CO2-to-CO, especially via the electrolytic chemical way, is highly important. In the present work, a N and P co-doped MnZn-bimetal supported 3D graphene aerogel (GA) catalyst, denoted as MnZn/N,P-3D-GA, was prepared and used for the CO2ER to produce CO, which delivered high performance in the reaction. When the potential was -0.92 V [vs. reversible hydrogen electrode (RHE)], the Faradaic efficiency of CO (FECO) reached 96.6% and the current density was 12.0 mA·cm-2. In addition, at the potential range from -0.97 to
CO2ER / MnZn bimetal / CO / NP co-doping / graphene aerogel
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