Citation:
Li Liu, Na Tian, Long Huang, Yu-Hao Hong, Ai-Yun Xie, Feng-Yang Zhang, Chi Xiao, Zhi-You Zhou, Shi-Gang Sun. Influence of transition metal modification of oxide-derived Cu electrodes in electroreduction of CO2[J]. Chinese Journal of Catalysis,
;2016, 37(7): 1070-1075.
doi:
10.1016/S1872-2067(16)62465-8
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The modification of oxide-derived Cu electrode with Ni, Zn, and Au was examined to improve the catalytic activity of CO2 electroreduction. The experimental results showed that Ni modification increased the Faraday efficiency of the formation of formic acid and n-propanol. The Faraday efficiency relating to the formation of the liquid products was as high as 34.3% at -1.5 V versus the saturated calomel electrode reference potential. In contrast, modification with Zn reduced the formic acid formation efficiency but enhanced the alcohol formation efficiency. Finally, modification with Au suppressed the selectivity toward the formation of both formic acid and alcohols.
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