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首页> 外文期刊>ACS catalysis >Curvature-Dependent Selectivity of CO2 Electrocatalytic Reduction on Cobalt Porphyrin Nanotubes
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Curvature-Dependent Selectivity of CO2 Electrocatalytic Reduction on Cobalt Porphyrin Nanotubes

机译:钴卟啉纳米管对CO2电催化还原的曲率依赖性选择性

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摘要

The selective electrocatalytic conversion of CO2 into useful products is a major challenge in facilitating a closed carbon cycle. Here, on the basis of first-principles calculations combined with computational hydrogen electrode model, we report a curvature-dependent selectivity of CO2 reduction on cobalt porphyrin nanotubes which are thermodynamically stable, displaying tunable geometric and electronic properties with tube radius. We have found that CO production is preferred on nanotubes with larger diameter, and the predicted current density from microkinetics is larger than that on Au, the best metal catalyst for CO production from CO2 electroreduction. In contrast, highly curved nanotubes with small radii tend to further catalyze CO reduction to CH4 gas and the overpotential is much lower in comparison with the cases on Cu surfaces. The selectivity and the feasibility of synthesis make cobalt porphyrin nanotubes very promising for CO2 conversion.
机译:CO 2选择性电催化转化为有用产品是促进封闭碳循环的主要挑战。在此,基于第一性原理计算与计算性氢电极模型的结合,我们报告了热力学稳定的钴卟啉纳米管上CO2还原的曲率依赖性选择性,该钴卟啉纳米管具有热力学稳定性,并显示出管半径可调整的几何和电子特性。我们已经发现,在具有较大直径的纳米管上,CO的生产是优选的,并且从微动力学预测的电流密度要比Au的大,而Au是Au的最佳金属催化剂。相反,具有小半径的高度弯曲的纳米管倾向于进一步催化CO还原为CH4气体,并且与在Cu表面的情况相比,过电势要低得多。合成的选择性和可行性使钴卟啉纳米管非常有望用于二氧化碳转化。

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