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A Disquisition on the Active Sites of Heterogeneous Catalysts for Electrochemical Reduction of CO2 to Value- Added Chemicals and Fuel

机译:电化学还原CO2为增值化学品和燃料的非均相催化剂活性位的研究

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摘要

Renewable-electricity-powered electrocatalytic CO2 reduction reactions (CO2RR) have been identified as an emerging technology to address the issue of rising CO2 emissions in the atmosphere. While the CO2RR has been demonstrated to be technically feasible, further improvements in catalyst performance through active sites engineering are a prerequisite to accelerate its commercial feasibility for utilization in large CO2-emitting industrial sources. Over the years, the improved understanding of the interaction of CO2 with the active sites has allowed superior catalyst design and subsequent attainment of prominent CO2RR activity in literature. This review tracks the evolution of the understanding of CO2RR active sites on different electrocatalysts such as metals, metal-oxides, single atoms, metal-carbon, and subsequently metal-free carbon-based catalysts. Despite the tremendous research efforts in the field, many scientific questions on the role of various active sites in governing CO2RR activity, selectivity, stability, and pathways are still unanswered. These gaps in knowledge are highlighted and a discussion is set forth on the merits of utilizing advanced in-situ and operando characterization techniques and machine learning (ML). Using this technique, the underlying mechanisms can be discerned, and as a result new strategies for designing active sites may be uncovered. Finally, this review advocates an interdisciplinary approach to discover and design CO2RR active sites (rather than focusing merely on catalyst activity) in a bid to stimulate practical research for industrial application.
机译:可再生电力驱动的电催化CO2还原反应(CO2RR)被认为是解决大气中CO2排放增加的问题的新兴技术。尽管已证明CO2RR在技术上是可行的,但通过活性位点工程进一步提高催化剂性能是加速其在可大量排放CO2的工业源中使用的商业可行性的先决条件。多年以来,对CO2与活性位点相互作用的加深了解使得催化剂设计更为出色,并随后获得了文献中突出的CO2RR活性。这篇综述追踪了对不同电催化剂(例如金属,金属氧化物,单原子,金属碳以及随后的无金属碳基催化剂)上的CO2RR活性位点的理解的演变。尽管在该领域进行了大量的研究工作,但是关于各种活性位点在控制CO2RR活性,选择性,稳定性和途径中的作用的许多科学问题仍未得到解答。这些知识方面的空白被突出显示,并就利用先进的原位和操作特征技术以及机器学习(ML)的优点展开了讨论。使用此技术,可以识别出潜在的机制,因此可能会发现用于设计活动站点的新策略。最后,本综述提倡一种跨学科的方法来发现和设计CO2RR活性位点(而不是仅仅关注催化剂活性),以刺激工业应用的实际研究。

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  • 来源
    《Advanced energy materials》 |2020年第11期|1902106.1-1902106.36|共36页
  • 作者

  • 作者单位

    Univ New South Wales Sch Chem Engn Particles & Catalysis Res Lab Sydney NSW 2052 Australia;

    Univ New South Wales Sch Chem Engn Particles & Catalysis Res Lab Sydney NSW 2052 Australia|Inst Teknol Bandung Dept Chem Engn Energy & Chem Engn Proc Res Grp Bandung 40132 Indonesia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    active sites; carbon; CO2RR; facets; in situ; interfaces; machine learning; operando;

    机译:活动站点;碳;CO2RR;方面;原位接口;机器学习操作;

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