电解
无机化学
电极
绝对电极电位
铜
可逆氢电极
材料科学
电解质
电导率
甲酸
电化学
钯氢电极
二氧化碳电化学还原
金属
工作电极
参比电极
金属有机骨架
化学
催化作用
冶金
有机化学
一氧化碳
吸附
物理化学
作者
Reiko Hinogami,Satoshi Yotsuhashi,Minako Deguchi,Yuji Zenitani,Hiroshi Hashiba,Yuka Yamada
摘要
We synthesized a copper rubeanate metal organic framework (CR-MOF) which has the potential to improve the catalytic activity of electrochemical reduction of CO2 due to its characteristics of electronic conductivity, proton conductivity, dispersed reaction sites, and nanopores. Synthesized CR-MOF particles were dropped on carbon paper (CP) to form a working electrode. The onset potential for CO2 reduction of a CR-MOF electrode was about 0.2 V more positive than that observed on a Cu metal electrode in an aqueous electrolyte solution. Our analysis of the reduction products during potentiostatic electrolysis showed formic acid (HCOOH) to be virtually the only CO2 reduction product on a CR-MOF electrode, whereas a Cu metal electrode generates a range of products. The quantity of products from the CR-MOF electrode was markedly greater (13-fold at −1.2 V vs. SHE) than that of a Cu metal electrode. Its stability was also confirmed.
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