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Progress and Perspective of Electrocatalytic CO2 Reduction for Renewable Carbonaceous Fuels and Chemicals

机译:可再生碳质燃料和化学物质电催化还原二氧化碳的研究进展与展望

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摘要

The worldwide unrestrained emission of carbon dioxide (CO2) has caused serious environmental pollution and climate change issues. For the sustainable development of human civilization, it is very desirable to convert CO2 to renewable fuels through clean and economical chemical processes. Recently, electrocatalytic CO2 conversion is regarded as a prospective pathway for the recycling of carbon resource and the generation of sustainable fuels. In this review, recent research advances in electrocatalytic CO2 reduction are summarized from both experimental and theoretical aspects. The referred electrocatalysts are divided into different classes, including metal–organic complexes, metals, metal alloys, inorganic metal compounds and carbon‐based metal‐free nanomaterials. Moreover, the selective formation processes of different reductive products, such as formic acid/formate (HCOOH/HCOO), monoxide carbon (CO), formaldehyde (HCHO), methane (CH4), ethylene (C2H4), methanol (CH3OH), ethanol (CH3CH2OH), etc. are introduced in detail, respectively. Owing to the limited energy efficiency, unmanageable selectivity, low stability, and indeterminate mechanisms of electrocatalytic CO2 reduction, there are still many tough challenges need to be addressed. In view of this, the current research trends to overcome these obstacles in CO2 electroreduction field are summarized. We expect that this review will provide new insights into the further technique development and practical applications of CO2 electroreduction.
机译:全球范围内不受限制的二氧化碳(CO2)排放已引起严重的环境污染和气候变化问题。为了人类文明的可持续发展,非常需要通过清洁,经济的化学过程将二氧化碳转化为可再生燃料。近来,电催化CO 2转化被认为是碳资源的循环利用和可持续燃料的产生的潜在途径。在这篇综述中,从实验和理论两个方面总结了电催化二氧化碳还原的最新研究进展。提及的电催化剂分为不同的类别,包括金属-有机配合物,金属,金属合金,无机金属化合物和无碳金属的纳米材料。此外,不同还原性产物的选择性形成过程,例如甲酸/甲酸酯(HCOOH / HCOO -),一氧化碳(CO),甲醛(HCHO),甲烷(CH4),乙烯(C2H4)分别详细介绍甲醇(CH 3 OH),乙醇(CH 3 CH 2 OH)等。由于有限的能量效率,难以控制的选择性,低稳定性以及电催化CO 2还原的不确定机制,仍然有许多艰巨的挑战需要解决。鉴于此,总结了克服二氧化碳电还原领域中这些障碍的当前研究趋势。我们希望这次审查将为进一步的技术发展和二氧化碳电还原的实际应用提供新的见解。

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