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Photocatalytic conversion of CO_2 using earth-abundant catalysts: A review on mechanism and catalytic performance

机译:富土催化剂光催化转化CO_2的机理和催化性能研究进展

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One of the major challenges in the development of cost-effective and efficient solar fuel generation is the scarcity of highly active, cheap and abundant molecular catalysts. Most of the current potent catalysts for photocatalytic conversion of CO2 are the second and third-row transition metal-based molecular systems that often make unfeasible large-scale production. This article reviews the current progress of photocatalytic conversion of CO2 using earth-abundant catalysts. In this review, fundamental aspects in the mechanism of CO2 conversion are comprehensively highlighted. This review also covers photocatalytic performance, efficiency and selectivity of several types of earth-abundant catalysts such as Fe, Ni, Co, Mn, and Cu-based catalysts. In general, the most recent scenarios suggested that there is still plenty of opportunities and prospects for further investigation to develop various collections of earth-abundant catalysts with better efficiency and selectivity. Additionally, this article also presents several main challenges and some future prospects for the implementation of large-scale photocatalytic conversion of CO2 using earth-abundant catalysts for solar fuel generation.
机译:发展具有成本效益和高效的太阳能燃料的主要挑战之一是缺乏高活性,廉价和丰富的分子催化剂。当前用于CO2光催化转化的大多数有效催化剂是第二行和第三行过渡金属基分子系统,通常无法进行大规模生产。本文回顾了使用富含地球的催化剂进行光催化转化二氧化碳的最新进展。在这篇综述中,全面强调了二氧化碳转化机理的基本方面。这篇综述还涵盖了几种类型的富地球催化剂(例如铁,镍,钴,锰和铜基催化剂)的光催化性能,效率和选择性。总的来说,最新的情况表明,仍有更多的机会和前景需要进一步研究,以开发出具有更好的效率和选择性的各种地球富集催化剂。此外,本文还提出了一些主要挑战,并提出了使用富含地球的催化剂来进行大规模光催化转化CO2的方法,以实现太阳能发电。

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