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A review of iron and cobalt porphyrins, phthalocyanines and related complexes for electrochemical and photochemical reduction of carbon dioxide

机译:铁和钴卟啉,酞菁和相关配合物用于电化学和光化学还原二氧化碳的综述

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摘要

This review summarizes research on the electrochemical and photochemical reduction of CO2 using a variety of iron and cobalt porphyrins, phthalocyanines and related complexes. Metalloporphyrins and metallophthalocyanines are visible light absorbers with extremely large extinction coefficients. However, yields of photochemically-generated active catalysts for CO2 reduction are typically low owing to the requirement of a second photoinduced electron. This requirement is not relevant to the case of electrochemical CO2 reduction. Recent progress on efficient and stable electrochemical systems includes the use of FeTPP catalysts that have prepositioned phenyl OH groups in their second coordination spheres. This has led to remarkable progress in carrying out coupled proton-electron transfer reactions for CO2 reduction. Such ground-breaking research has to be continued in order to produce renewable fuels in an economically feasible manner.
机译:这篇综述总结了使用多种铁和钴卟啉,酞菁和相关配合物对CO2进行电化学和光化学还原的研究。金属卟啉和金属酞菁是消光系数非常大的可见光吸收剂。然而,由于需要第二光致电子,用于还原CO 2的光化学生成的活性催化剂的产率通常较低。该要求与电化学CO 2还原的情况无关。有效和稳定的电化学系统的最新进展包括使用FeTPP催化剂,该催化剂在其第二个配位球中已预先放置了苯基OH基团。这导致在进行耦合的质子-电子转移反应以减少CO 2方面取得了显着进展。为了以经济可行的方式生产可再生燃料,必须继续进行这种开创性的研究。

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