A review of anodic catalysts and their application in (non-)Kolbe electrocatalytic decarboxylation of carboxylic acids

IF 6.4 3区 环境科学与生态学 Q2 ENERGY & FUELS Carbon Resources Conversion Pub Date : 2023-04-24 DOI:10.1016/j.crcon.2023.04.004
Shichun Wang , Dezhang Ren , Yueying Du , Mengjie Zhang , Nahui Zhang , Yaguang Sun , Zhibao Huo
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Abstract

Biomass, as the exclusive and abundant organic resources, is considered to be the promising renewable resource. Carboxylic acids are one of the many compounds that can be obtained from raw biomass. Decarboxylation of carboxylic acids into fuels and chemicals via electrochemical method at mild reaction condition has been studied for many years. The (non-)Kolbe reaction, one of the oldest organic electrochemical reactions, is the decarboxylation of carboxylic acids to produce alkanes, alcohols, esters, etc. And electrode materials influence the production of electrocatalytic decarboxylation products from carboxylic acids. Therefore, this work mainly reviews the recent advances in applications of anodic materials for (non-)Kolbe electrocatalytic decarboxylation of carboxylic acids. It discusses the reaction mechanism of (non-) Kolbe electrolytic reaction, and the electrocatalytic oxidation of carboxylic acid using different electrodes and electrolytic systems to synthesize fuels and chemicals. Also, various types of electrode catalysts, such as Pt-based catalysts, C-based catalysts, and other catalysts, are introduced in detail. Finally, the challenges and future trends of the (non-)Kolbe reaction of carboxylic acids are presented. This review found that platinum-based electrocatalysts proved to be the most promising catalysts at present. And in recent years, a variety of synthesis methods have been developed to synthesize small size and high-performance noble metal based amorphous catalysts. Another approach is to study catalysts without platinum electricity, such as Ru, Ir, Ti and carbon materials. The review is helpful in understanding and know the anodic materials and their application in (non-)Kolbe electrocatalytic decarboxylation of carboxylic acids for the readers.

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阳极催化剂及其在(非)Kolbe电催化羧酸脱羧反应中的应用综述
生物质作为一种独特而丰富的有机资源,被认为是一种很有前途的可再生资源。羧酸是可以从原料生物质中获得的许多化合物之一。在温和反应条件下,利用电化学方法将羧酸脱羧转化为燃料和化学品已经进行了多年的研究。(非)Kolbe反应是羧酸脱羧生成烷烃、醇、酯等的反应,是最古老的有机电化学反应之一。电极材料影响羧酸电催化脱羧产物的生产。因此,本文主要综述了近年来阳极材料在(非)Kolbe电催化羧酸脱羧中的应用进展。讨论了(非)Kolbe电解反应的反应机理,以及采用不同电极和电解体系对羧酸进行电催化氧化合成燃料和化学品。此外,还详细介绍了各种类型的电极催化剂,如pt基催化剂、c基催化剂等。最后,提出了羧酸(非)Kolbe反应的挑战和未来发展趋势。本文综述了铂基电催化剂是目前最具发展前景的催化剂。近年来,人们发展了多种合成方法来合成小尺寸、高性能的贵金属基非晶催化剂。另一种方法是研究不含铂电的催化剂,如Ru、Ir、Ti和碳材料。本文的综述有助于读者理解和认识阳极材料及其在(非)Kolbe电催化羧酸脱羧中的应用。
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来源期刊
Carbon Resources Conversion
Carbon Resources Conversion Materials Science-Materials Science (miscellaneous)
CiteScore
9.90
自引率
11.70%
发文量
36
审稿时长
10 weeks
期刊介绍: Carbon Resources Conversion (CRC) publishes fundamental studies and industrial developments regarding relevant technologies aiming for the clean, efficient, value-added, and low-carbon utilization of carbon-containing resources as fuel for energy and as feedstock for materials or chemicals from, for example, fossil fuels, biomass, syngas, CO2, hydrocarbons, and organic wastes via physical, thermal, chemical, biological, and other technical methods. CRC also publishes scientific and engineering studies on resource characterization and pretreatment, carbon material innovation and production, clean technologies related to carbon resource conversion and utilization, and various process-supporting technologies, including on-line or off-line measurement and monitoring, modeling, simulations focused on safe and efficient process operation and control, and process and equipment optimization.
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Outside Front Cover Outside Back Cover Developments and challenges on enhancement of photocatalytic CO2 reduction through photocatalysis Outside Front Cover Outside Back Cover
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