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Electrochemical Reduction of CO2 on Metal-Nitrogen-Doped Carbon Catalysts

机译:金属 - 氮掺杂碳催化剂上CO2的电化学还原

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摘要

The electrochemical CO2 reduction reaction (CO2RR) is a promising technology for converting waste CO2 into chemicals which could be used as feedstock for the chemical industry or as synthetic fuels. The technological viability of this process, however, is contingent on finding affordable and efficient catalysts. Recently, carbon-based solid state catalyst materials containing small amounts of nitrogen and transition metals (MNC) have emerged as a selective and cost-efficient alternative to noble metal catalysts for the direct electrochemical reduction of CO2 into CO. In addition, other products have also been reported, including formic acid and methane. In this Perspective, we offer a focused discussion of recent advances in the field of MNC catalysts for the CO2RR. The different factors which control the catalytic performance of MNC toward the CO2RR are discussed in this Perspective. We focus on density functional theory-guided experimental studies aiming to elucidate key experimental parameters and molecular descriptors that control the activity and selectivity of this class of materials. We close addressing the remaining challenges and take a look forward into future studies.
机译:电化学二氧化碳还原反应(CO2RR)是将废物二氧化碳转化为化学品的有希望的技术,该化学品可用作化学工业的原料或作为合成燃料。然而,该方法的技术可行性是针对找到实惠和有效的催化剂的目的。最近,含有少量氮气和过渡金属(MNC)的碳基固态催化剂材料被出现为对贵金属催化剂的选择性和成本有效的替代方案,用于直接电化学将CO2转化为CO。此外,其他产品有还报道了,包括甲酸和甲烷。在这种观点中,我们提供了对CO 2RR催化剂领域近期进步的重点讨论。在这种观点讨论了控制MNC朝向CO 2RR的催化性能的不同因素。我们专注于密度函数理论引导的实验研究,旨在阐明控制这类材料的活性和选择性的关键实验参数和分子描述符。我们仔细处理了剩下的挑战,并期待未来的研究。

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