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Electroreduction of CO2 to ethanol by electrochemically deposited Cu-lignin complexes on Ni foam electrodes

机译:通过在泡沫镍电极上电化学沉积铜木质素络合物将CO2电还原为乙醇

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摘要

A low cost, non-toxic and highly selective catalyst based on a Cu-lignin molecular complex is developed for CO2 electroreduction to ethanol. Ni foam (NF), Cu-Ni foam (Cu-NF) and Cu-lignin-Ni foam (Cu-lignin-NF) were prepared by a facile and reproducible electrochemical deposition method. The electrochemical CO2 reduction activity of Cu-lignin-NF was found to be higher than Cu-NF. A maximum faradaic efficiency of 23.2 with current density of 22.5 mA cm(-2) was obtained for Cu-lignin-NF at -0.80 V (versus RHE) in 0.1 M Na2SO4 towards ethanol production. The enhancement of catalytic performance is attributed to the growth of the number of active sites and the change of oxidation states of Cu and NF due to the presence of lignin.
机译:研制了一种低成本、无毒、高选择性的基于Cu-木质素分子络合物的CO2电还原制乙醇催化剂。采用简单易用的电化学沉积法制备了泡沫镍(NF)、泡沫铜镍(Cu-NF)和铜木质素泡沫(Cu-lignin-NF)。结果表明,Cu-木质素-NF的电化学CO2还原活性高于Cu-NF。在-0.80 V(与RHE)的0.1 M Na2SO4中,Cu-lignin-NF在22.5 mA cm(-2)的电流密度下获得了23.2%的最大法拉第效率。催化性能的提高归因于活性位点数量的增加以及木质素的存在导致Cu和NF氧化态的变化。

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