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双金属纳米晶体:合成、性质与应用。

Bimetallic Nanocrystals: Syntheses, Properties, and Applications.

机构信息

The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University , Atlanta, Georgia 30332, United States.

出版信息

Chem Rev. 2016 Sep 28;116(18):10414-72. doi: 10.1021/acs.chemrev.6b00211. Epub 2016 Jul 1.

Abstract

Achieving mastery over the synthesis of metal nanocrystals has emerged as one of the foremost scientific endeavors in recent years. This intense interest stems from the fact that the composition, size, and shape of nanocrystals not only define their overall physicochemical properties but also determine their effectiveness in technologically important applications. Our aim is to present a comprehensive review of recent research activities on bimetallic nanocrystals. We begin with a brief introduction to the architectural diversity of bimetallic nanocrystals, followed by discussion of the various synthetic techniques necessary for controlling the elemental ratio and spatial arrangement. We have selected key examples from the literature that exemplify critical concepts and place a special emphasis on mechanistic understanding. We then discuss the composition-dependent properties of bimetallic nanocrystals in terms of catalysis, optics, and magnetism and conclude the Review by highlighting applications that have been enabled and/or enhanced by precisely controlling the synthesis of bimetallic nanocrystals.

摘要

近年来,人们在金属纳米晶体的合成方面取得了显著的突破,这一领域已成为最受关注的科学研究方向之一。人们之所以对此产生浓厚的兴趣,主要是因为纳米晶体的组成、尺寸和形状不仅决定了其整体物理化学性质,还对其在技术应用中的有效性产生了重要影响。我们旨在对双金属纳米晶体的最新研究进展进行全面综述。首先,我们将简要介绍双金属纳米晶体的结构多样性,然后讨论控制元素比例和空间排列所需的各种合成技术。我们从文献中选择了一些关键示例,这些示例体现了关键概念,并特别强调了对其机理的理解。接着,我们将讨论双金属纳米晶体在催化、光学和磁学方面的组成依赖性性质,并通过突出精确控制双金属纳米晶体合成所带来的应用,对综述进行总结。

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