Carbonaceous materials for electrochemical CO2 reduction

IF 22.2 Q1 CHEMISTRY, MULTIDISCIPLINARY EnergyChem Pub Date : 2020-01-01 DOI:10.1016/j.enchem.2019.100024
Leigang Li , Yang Huang , Yanguang Li
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引用次数: 59

Abstract

Electrochemical CO2 reduction reaction converts CO2 into valuable chemical fuels, and has attracted quickly growing attention as a possible solution to mitigate the increasing atmospheric CO2 concentration and close the broken carbon cycle. Its practical viability relies on the rational design and development of active, selective and durable electrocatalyst materials, preferably composed of earth abundant ingredients. Among different candidates, carbonaceous materials are of particular interest due to their earth abundance and low cost. In this review article, we overview the recent progress, current status and possible future research direction of carbonaceous materials for electrochemical CO2 reduction. We start with fundamentals about electrochemical CO2 reduction. They are then followed by detailed discussion about the research progresses of heteroatom (e.g., N, P, B and F) doped carbons and metal-nitrogen-carbon (e.g. Co-N-C and Fe-N-C) type materials. At last, a short perspective is offered to highlight possible future research directions. With this review, we hope to provide our readers a comprehensive picture of this quickly developing field.

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用于电化学CO2还原的碳质材料
电化学CO2还原反应将CO2转化为有价值的化学燃料,作为减缓大气CO2浓度增加和关闭断裂的碳循环的可能解决方案而迅速引起人们的关注。其实际可行性依赖于合理设计和开发活性、选择性和耐用的电催化剂材料,最好由地球丰富的成分组成。在不同的候选材料中,碳质材料由于其地球丰度和低成本而受到特别关注。本文综述了碳质材料电化学还原CO2的研究进展、现状及未来可能的研究方向。我们从电化学二氧化碳还原的基本原理开始。然后详细讨论了杂原子(如N、P、B和F)掺杂碳和金属-氮-碳(如Co-N-C和Fe-N-C)型材料的研究进展。最后,对未来可能的研究方向进行了简要展望。通过这篇综述,我们希望读者对这一快速发展的领域有一个全面的了解。
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来源期刊
EnergyChem
EnergyChem Multiple-
CiteScore
40.80
自引率
2.80%
发文量
23
审稿时长
40 days
期刊介绍: EnergyChem, a reputable journal, focuses on publishing high-quality research and review articles within the realm of chemistry, chemical engineering, and materials science with a specific emphasis on energy applications. The priority areas covered by the journal include:Solar energy,Energy harvesting devices,Fuel cells,Hydrogen energy,Bioenergy and biofuels,Batteries,Supercapacitors,Electrocatalysis and photocatalysis,Energy storage and energy conversion,Carbon capture and storage
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