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具有非常规相的多组分金属纳米材料的应变与表面工程

Strain and Surface Engineering of Multicomponent Metallic Nanomaterials with Unconventional Phases.

作者信息

Yao Qing, Yu Zhiyong, Li Leigang, Huang Xiaoqing

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, China.

出版信息

Chem Rev. 2023 Aug 9;123(15):9676-9717. doi: 10.1021/acs.chemrev.3c00252. Epub 2023 Jul 10.

Abstract

Multicomponent metallic nanomaterials with unconventional phases show great prospects in electrochemical energy storage and conversion, owing to unique crystal structures and abundant structural effects. In this review, we emphasize the progress in the strain and surface engineering of these novel nanomaterials. We start with a brief introduction of the structural configurations of these materials, based on the interaction types between the components. Next, the fundamentals of strain, strain effect in relevant metallic nanomaterials with unconventional phases, and their formation mechanisms are discussed. Then the progress in surface engineering of these multicomponent metallic nanomaterials is demonstrated from the aspects of morphology control, crystallinity control, surface modification, and surface reconstruction. Moreover, the applications of the strain- and surface-engineered unconventional nanomaterials mainly in electrocatalysis are also introduced, where in addition to the catalytic performance, the structure-performance correlations are highlighted. Finally, the challenges and opportunities in this promising field are prospected.

摘要

具有非常规相的多组分金属纳米材料由于其独特的晶体结构和丰富的结构效应,在电化学能量存储和转换方面展现出巨大的前景。在本综述中,我们着重介绍了这些新型纳米材料在应变和表面工程方面的进展。我们首先基于各组分之间的相互作用类型,简要介绍这些材料的结构构型。接下来,讨论应变的基本原理、具有非常规相的相关金属纳米材料中的应变效应及其形成机制。然后从形貌控制、结晶度控制、表面改性和表面重构等方面展示了这些多组分金属纳米材料在表面工程方面的进展。此外,还介绍了经过应变和表面工程处理的非常规纳米材料主要在电催化方面的应用,其中除了催化性能外,还突出了结构与性能的相关性。最后,展望了这个充满前景的领域所面临的挑战和机遇。

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