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二维材料中的生长与晶界

Growth and Grain Boundaries in 2D Materials.

作者信息

Yao Wenqian, Wu Bin, Liu Yunqi

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Science, Beijing 100190, P.R. China.

Sino-Danish Center for Education and Research, Sino-Danish College, University of Chinese Academy of Sciences, Beijing 100049, P.R. China.

出版信息

ACS Nano. 2020 Aug 25;14(8):9320-9346. doi: 10.1021/acsnano.0c03558. Epub 2020 Jul 29.

Abstract

Grain boundaries (GBs) are a kind of lattice imperfection widely existing in two-dimensional materials, playing a critical role in materials' properties and device performance. Related key issues in this area have drawn much attention and are still under intense investigation. These issues include the characterization of GBs at different length scales, the dynamic formation of GBs during the synthesis, the manipulation of the configuration and density of GBs for specific material functionality, and the understanding of structure-property relationships and device applications. This review will provide a general introduction of progress in this field. Several techniques for characterizing GBs, such as direct imaging by high-resolution transmission electron microscopy, visualization techniques of GBs by optical microscopy, plasmon propagation, or second harmonic generation, are presented. To understand the dynamic formation process of GBs during the growth, a general geometric approach and theoretical consideration are reviewed. Moreover, strategies controlling the density of GBs for GB-free materials or materials with tunable GB patterns are summarized, and the effects of GBs on materials' properties are discussed. Finally, challenges and outlook are provided.

摘要

晶界(GBs)是二维材料中广泛存在的一种晶格缺陷,对材料性能和器件性能起着关键作用。该领域的相关关键问题已引起广泛关注,目前仍在深入研究中。这些问题包括不同长度尺度下晶界的表征、合成过程中晶界的动态形成、为实现特定材料功能而对晶界构型和密度的调控,以及对结构 - 性能关系和器件应用的理解。本综述将对该领域的进展进行总体介绍。介绍了几种表征晶界的技术,如高分辨率透射电子显微镜直接成像、通过光学显微镜、等离子体激元传播或二次谐波产生对晶界进行可视化的技术。为了解晶界在生长过程中的动态形成过程,综述了一种通用的几何方法和理论考量。此外,总结了控制无晶界材料或具有可调晶界图案材料中晶界密度的策略,并讨论了晶界对材料性能的影响。最后,给出了挑战与展望。

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