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One-dimensional CuIn alloy nanowires as a robust and efficient electrocatalyst for selective CO_2-to-CO conversion

机译:一维CuIn合金纳米线是用于选择性CO_2到CO转化的强大而有效的电催化剂

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摘要

Electrical anodization of Cu foil produces one-dimensional Cu nanowires of high surface areas, which turns to CuIn alloy nanowires by indium electrodeposition replacing edge site Cu atoms. An electrochemical pre-activation forms a highly conformal amorphous In(OH)(3) overlayer with oxygen vacancy on the CuIn alloy that facilitates CO2 adsorption to promote selective CO formation suppressing competing H-2 adsorption. Thus the activated CuIn alloy nanowires catalyse electrochemical CO2 conversion to CO with high CO selectivity ( 68.2%) and high current density (ca. -3.9 mAcm(-2)) at -0.6 Vim, which represents the higher partial CO current density (ca. -2.66 mAcm(-2)) than that of previously reported CuIn alloy powders without nanostructuring. The performance remains stable for more than 15 h without significant degradation.
机译:Cu箔的电阳极氧化产生高表面积的一维Cu纳米线,通过铟电沉积替代边缘位点Cu原子,从而转变为CuIn合金纳米线。电化学预活化在CuIn合金上形成具有氧空位的高度共形的非晶In(OH)(3)覆层,该覆层有助于CO2吸附,从而促进选择性CO的形成,从而抑制竞争性H-2吸附。因此,活化的CuIn合金纳米线以-0.6 Vim的高CO选择性(> 68.2%)和高电流密度(ca.-3.9 mAcm(-2))催化电化学CO2转化为CO,代表较高的部分CO电流密度(比以前报道的无纳米结构的CuIn合金粉末约-2.66 mAcm(-2))。性能可保持稳定超过15小时,而不会出现明显的退化。

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