Department of Chemistry, University of Illinois at Chicago, Chicago, IL, USA.
Chemical Sciences and Engineering Division, Argonne National Laboratory, Lemont, IL, USA.
Nat Commun. 2021 Jun 2;12(1):3288. doi: 10.1038/s41467-021-23486-1.
Electrocatalytic nanocarbon (EN) is a class of material receiving intense interest as a potential replacement for expensive, metal-based electrocatalysts for energy conversion and chemical production applications. The further development of EN will require an intricate knowledge of its catalytic behaviors, however, the true nature of their electrocatalytic activity remains elusive. This review highlights work that contributed valuable knowledge in the elucidation of EN catalytic mechanisms. Experimental evidence from spectroscopic studies and well-defined molecular models, along with the survey of computational studies, is summarized to document our current mechanistic understanding of EN-catalyzed oxygen, carbon dioxide and nitrogen electrochemistry. We hope this review will inspire future development of synthetic methods and in situ spectroscopic tools to make and study well-defined EN structures.
电催化纳米碳(EN)是一类作为潜在的能源转换和化学生产应用中昂贵的金属基电催化剂替代品而受到广泛关注的材料。EN 的进一步发展需要对其催化行为有深入的了解,但它们的电催化活性的真正本质仍然难以捉摸。本综述强调了有助于阐明 EN 催化机制的工作。通过光谱研究和明确定义的分子模型获得的实验证据,以及对计算研究的调查,总结了我们目前对 EN 催化氧气、二氧化碳和氮气电化学的机制理解。我们希望本综述将激发未来合成方法和原位光谱工具的发展,以制造和研究明确定义的 EN 结构。