非五次对称二维单晶的生长

Guoliang Cui, Jiajie Qi, Zhihua Liang, Fankai Zeng, Xiaowen Zhang, Xiaozhi Xu* and Kaihui Liu*, 
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引用次数: 0

摘要

在各种二维(2D)材料中,99% 以上都是非中心对称的。然而,由于常用的基底一般都是中心对称的,因此在非中心对称二维材料的生长过程中,通常不可避免地会出现反平行岛,这是因为在中心对称基底上,这两种反平行岛的能量是相等的。因此,与石墨烯等中心对称二维单晶相比,实现非中心对称二维单晶的生长一直是一个巨大的挑战。在这篇综述中,我们介绍了过去十年中通过精确化学过程所做的杰出努力和取得的进展。我们首先讨论了非中心对称二维单晶生长的巨大挑战和可能的策略。然后,我们重点介绍了在制备代表性非中心对称二维单晶体方面取得的进展,包括六方氮化硼(hBN)、过渡金属二卤化物(TMDs)和其他非中心对称二维材料。最后,我们对层控、堆叠控和扭曲控非中心对称二维单晶及其异质结构的生长进行了总结,并展望了未来的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Growth of Noncentrosymmetric Two-Dimensional Single Crystals

Among the various two-dimensional (2D) materials, more than 99% of them are noncentrosymmetric. However, since the commonly used substrates are generally centrosymmetric, antiparallel islands are usually inevitable in the growth of noncentrosymmetric 2D materials because of the energetic equivalency of these two kinds of antiparallel islands on centrosymmetric substrates. Therefore, achieving the growth of noncentrosymmetric 2D single crystals has long been a great challenge compared with the centrosymmetric ones like graphene. In this review, we presented the remarkable efforts and progress in the past decade, through precise chemical processes. We first discussed the great challenge and possible strategies in the growth of noncentrosymmetric 2D single crystals. Then, we focused on the advancements made in producing representative noncentrosymmetric 2D single crystals, including hexagonal boron nitride (hBN), transition metal dichalcogenides (TMDs), and other noncentrosymmetric 2D materials. At last, we summarized and looked forward to future research on the growth of layer-, stacking-, and twist-controlled noncentrosymmetric 2D single crystals and their heterostructures.

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来源期刊
Precision Chemistry
Precision Chemistry 精密化学技术-
CiteScore
0.80
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期刊介绍: Chemical research focused on precision enables more controllable predictable and accurate outcomes which in turn drive innovation in measurement science sustainable materials information materials personalized medicines energy environmental science and countless other fields requiring chemical insights.Precision Chemistry provides a unique and highly focused publishing venue for fundamental applied and interdisciplinary research aiming to achieve precision calculation design synthesis manipulation measurement and manufacturing. It is committed to bringing together researchers from across the chemical sciences and the related scientific areas to showcase original research and critical reviews of exceptional quality significance and interest to the broad chemistry and scientific community.
期刊最新文献
Issue Editorial Masthead Issue Publication Information Precision in Sensing Precision in Sensing. Recent Advances in Tetra-Coordinate Boron-Based Photoactive Molecules for Luminescent Sensing, Imaging, and Anticounterfeiting.
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