Engineering regulated catalysts for electrocatalytically driven CO2 preparation of ethanol

IF 4.7 2区 化学 Q2 CHEMISTRY, PHYSICAL
Guanling Yang , Jinsheng Liang , Fei Wang
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Abstract

Electrocatalytic CO2RR is an ideal method. It is capable of converting CO2 into usable fuels and valuable chemical products. Electrocatalytic CO2RR produces a wide range of chemicals. Of these, ethanol (EtOH) is favored for its wide industrial and commercial value. However, electrocatalytic CO2RR preparation of EtOH involves C-C coupling reactions and is a multi-electron transfer process. For this reason, the efficient electrochemical conversion of EtOH by CO2RR remains a great challenge. The preparation of EtOH by electrocatalytic CO2RR involves the interference of a competing hydrogen evolution reaction as well as some other reaction intermediates. This limits the improvement of Faraday efficiency of ethanol (FEEtOH) and the current density of ethanol (JEtOH). To improve ethanol selectivity, the researchers designed and modified the catalysts using engineering regulation effects such as reaction conditions engineering regulation, surface engineering regulation, interfacial engineering regulation, and single atom engineering regulation, and achieved excellent results. Therefore, it is important to understand the key factors affecting the catalyst activity by different engineering regulations and to apply a combination of engineering regulations to the catalyst development. Therefore, this paper firstly provides a comprehensive summary of the catalysts applied for the preparation of EtOH by electrocatalytic CO2RR, including two major categories of catalysts containing pure metal active components and catalysts without pure metal active components. Subsequently, the main effects of engineering modulation on catalyst activity are analyzed and summarized in detail, respectively. Finally, the future challenges and development prospects of electrocatalytic CO2RR for EtOH preparation were highlighted.

用于电催化二氧化碳制备乙醇的工程调节催化剂
电催化 CO2RR 是一种理想的方法。它能够将二氧化碳转化为可用燃料和有价值的化学产品。电催化 CO2RR 可以生产多种化学品。其中,乙醇(EtOH)因其广泛的工业和商业价值而备受青睐。然而,电催化 CO2RR 制备 EtOH 涉及 C-C 偶联反应,是一个多电子转移过程。因此,通过 CO2RR 高效电化学转化 EtOH 仍然是一个巨大的挑战。通过电催化 CO2RR 制备 EtOH 时,会受到竞争性氢进化反应以及其他一些反应中间产物的干扰。这限制了乙醇法拉第效率(FEEtOH)和乙醇电流密度(JEtOH)的提高。为了提高乙醇的选择性,研究人员利用反应条件工程调控、表面工程调控、界面工程调控和单原子工程调控等工程调控效应对催化剂进行了设计和改性,取得了很好的效果。因此,了解不同工程调控影响催化剂活性的关键因素,并将工程调控组合应用于催化剂开发具有重要意义。因此,本文首先对应用于电催化 CO2RR 制备 EtOH 的催化剂进行了全面总结,包括含纯金属活性组分的催化剂和不含纯金属活性组分的催化剂两大类。随后,分别详细分析和总结了工程调制对催化剂活性的主要影响。最后,重点介绍了电催化 CO2RR 用于制备 EtOH 的未来挑战和发展前景。
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来源期刊
Applied Catalysis A: General
Applied Catalysis A: General 化学-环境科学
CiteScore
9.00
自引率
5.50%
发文量
415
审稿时长
24 days
期刊介绍: Applied Catalysis A: General publishes original papers on all aspects of catalysis of basic and practical interest to chemical scientists in both industrial and academic fields, with an emphasis onnew understanding of catalysts and catalytic reactions, new catalytic materials, new techniques, and new processes, especially those that have potential practical implications. Papers that report results of a thorough study or optimization of systems or processes that are well understood, widely studied, or minor variations of known ones are discouraged. Authors should include statements in a separate section "Justification for Publication" of how the manuscript fits the scope of the journal in the cover letter to the editors. Submissions without such justification will be rejected without review.
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