用于电化学二氧化碳还原的二维金属有机框架的最新进展

Xingcheng Ma , Meiling Xiao , Changpeng Liu , Wei Xing
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引用次数: 0

摘要

通过电化学方法将二氧化碳还原(ECR)为深度还原的化学实体,为将零星能源转化为持久燃料提供了一条引人注目的途径,同时还可形成一个封闭的人为碳循环。金属有机框架(MOFs)作为一种用于 ECR 的前景广阔的多功能材料已被广泛研究。值得注意的是,二维(2D)MOFs 因其特殊的化学和结构特性(如增强导电性、增加开放位点、改善质量传输和可调界面环境)而引起了特别的研究关注。本综述总结了二维 MOFs 在 ECR 方面的最新进展。我们首先介绍了二维 MOFs 的合成策略。然后,我们主要介绍了近年来用于 ECR 的先进二维 MOF 电催化剂,并通过产品阐明了这些催化剂。介绍了二氧化碳(CO2)转化为碳产物的机理、影响产物形成的因素,并总结了部分二维 MOF 催化剂及其合成方法。通过整合导致产物形成的潜在因素,我们预计该综述将为利用二维 MOF 催化剂进一步推进二氧化碳还原提供新的机遇。
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Recent advances of 2D metal-organic frameworks for electrochemical carbon dioxide reduction

The electrochemical carbon dioxide reduction (ECR) to profoundly diminished chemical entities offers a compelling avenue for transforming sporadic energy resources into enduring fuels while forging an enclosed anthropogenic carbon cycle. Metal-organic frameworks (MOFs) has been extensively investigated as a promising multifunctional material for ECR. Notably, two-dimensional (2D) MOFs attract particular research attention due to their specific chemical and structural properties, i.e., enhanced electrical conductivity, increased open sites, improved mass transport and tunable interfacial environments. In this review, the recent progress of 2D MOFs for ECR is summarized. We begin with the introduction of the synthetic strategies of 2D MOFs. Then, we mainly focus on the advanced 2D MOF electrocatalysts for ECR in recent years, which are clarified by the products. The mechanism underlying the conversion of carbon dioxide (CO2) into carbon products, the factors influencing product formation and a summary of selected 2D MOF catalysts and their synthetic methods are presented. By consolidating the potential factors contributing to the products, we anticipate that the review will offer fresh opportunities for further advancements in CO2 reduction with 2D MOF catalysts.

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