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二维超晶格材料的异质结构工程用于电催化。

Heterostructure Engineering of 2D Superlattice Materials for Electrocatalysis.

机构信息

Key Laboratory of Interface Science and Engineering in Advanced Materials, Ministry of Education, Taiyuan University of Technology, Taiyuan, 030024, P. R. China.

Materials Institute of Atomic and Molecular Science, Shaanxi University of Science & Technology, Xi'an, 710021, P. R. China.

出版信息

Adv Sci (Weinh). 2022 Dec;9(35):e2204297. doi: 10.1002/advs.202204297. Epub 2022 Oct 20.

Abstract

Exploring low-cost and high-efficient electrocatalyst is an exigent task in developing novel sustainable energy conversion systems, such as fuel cells and electrocatalytic fuel generations. 2D materials, specifically 2D superlattice materials focused here, featured highly accessible active areas, high density of active sites, and high compatibility with property-complementary materials to form heterostructures with desired synergetic effects, have demonstrated to be promising electrocatalysts for boosting the performance of sustainable energy conversion and storage devices. Nevertheless, the reaction kinetics, and in particular, the functional mechanisms of the 2D superlattice-based catalysts yet remain ambiguous. In this review, based on the recent progress of 2D superlattice materials in electrocatalysis applications, the rational design and fabrication of 2D superlattices are first summarized and the application of 2D superlattices in electrocatalysis is then specifically discussed. Finally, perspectives on the current challenges and the strategies for the future design of 2D superlattice materials are outlined. This review attempts to establish an intrinsic correlation between the 2D superlattice heterostructures and the catalytic properties, so as to provide some insights into developing high-performance electrocatalysts for next-generation sustainable energy conversion and storage.

摘要

探索低成本、高效率的电催化剂是开发新型可持续能源转换系统(如燃料电池和电催化燃料生成)的紧迫任务。二维材料,特别是这里关注的二维超晶格材料,具有极高的可及活性面积、高密度的活性位点,以及与性能互补材料的高兼容性,可形成具有所需协同效应的异质结构,已被证明是提高可持续能源转换和存储设备性能的有前途的电催化剂。然而,二维超晶格基催化剂的反应动力学,特别是功能机制仍然不明确。在这篇综述中,基于二维超晶格材料在电催化应用方面的最新进展,首先总结了二维超晶格的合理设计和制备,并专门讨论了二维超晶格在电催化中的应用。最后,概述了当前挑战和未来二维超晶格材料设计的策略。本综述试图在二维超晶格异质结构和催化性能之间建立内在联系,以期为开发下一代可持续能源转换和存储的高性能电催化剂提供一些思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ba/9762311/e1a14ca4483b/ADVS-9-2204297-g017.jpg

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