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Carbon dioxide reduction with homogenous early transition metal complexes: Opportunities and challenges for developing CO2 catalysis

机译:均质的早期过渡金属配合物减少二氧化碳的排放:发展二氧化碳催化的机遇和挑战

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摘要

The field of carbon dioxide reduction by homogeneous early transition complexes (groups 3-7) is reviewed. Many reactions with CO2 have been studied with late transition metal complexes (groups 8-10), and significant progress has been made in developing active and selective homogeneous catalysts for CO2 reduction with late metals. However, one major drawback of these systems is that they generally only produce the 2e(-) reduction products CO or formate. In comparison, early transition metal complexes have been neglected for the development of CO2 reduction catalysts. Stoichiometric and catalytic reductions of CO2 to methanol and similar products have been observed with early transition metal complexes, and highly active catalysts may be developed based on early transition metal complexes that could reduce CO2 to liquid fuels such as methanol or to hydrocarbons such as methane. (C) 2017 Elsevier B.V. All rights reserved.
机译:审查了均相的早期过渡配合物(3-7组)减少二氧化碳的领域。已经研究了与晚期过渡金属配合物(第8-10组)的许多与CO2的反应,并且在开发活性和选择性均相催化剂以减少晚期金属与CO2方面取得了重大进展。但是,这些系统的一个主要缺点是它们通常仅产生2e(-)还原产物CO或甲酸盐。相比之下,早期过渡金属络合物在开发CO2还原催化剂方面已被忽略。早期过渡金属配合物已观察到化学计量和催化还原成甲醇和类似产物的二氧化碳,并且可以基于早期过渡金属配合物开发高活性催化剂,该催化剂可将二氧化碳还原为液体燃料(例如甲醇)或碳氢化合物(例如甲烷)。 (C)2017 Elsevier B.V.保留所有权利。

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