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γ-锗硒:一种来自IV-VI族单硫属化物的新型六方多晶型物。

γ-GeSe: A New Hexagonal Polymorph from Group IV-VI Monochalcogenides.

作者信息

Lee Sol, Jung Joong-Eon, Kim Han-Gyu, Lee Yangjin, Park Je Myoung, Jang Jeongsu, Yoon Sangho, Ghosh Arnab, Kim Minseol, Kim Joonho, Na Woongki, Kim Jonghwan, Choi Hyoung Joon, Cheong Hyeonsik, Kim Kwanpyo

机构信息

Department of Physics, Yonsei University, Seoul 03722, Korea.

Center for Nanomedicine, Institute for Basic Science (IBS), Seoul 03722, Korea.

出版信息

Nano Lett. 2021 May 26;21(10):4305-4313. doi: 10.1021/acs.nanolett.1c00714. Epub 2021 May 10.

Abstract

The family of group IV-VI monochalcogenides has an atomically puckered layered structure, and their atomic bond configuration suggests the possibility for the realization of various polymorphs. Here, we report the synthesis of the first hexagonal polymorph from the family of group IV-VI monochalcogenides, which is conventionally orthorhombic. Recently predicted four-atomic-thick hexagonal GeSe, so-called γ-GeSe, is synthesized and clearly identified by complementary structural characterizations, including elemental analysis, electron diffraction, high-resolution transmission electron microscopy imaging, and polarized Raman spectroscopy. The electrical and optical measurements indicate that synthesized γ-GeSe exhibits high electrical conductivity of 3 × 10 S/m, which is comparable to those of other two-dimensional layered semimetallic crystals. Moreover, γ-GeSe can be directly grown on h-BN substrates, demonstrating a bottom-up approach for constructing vertical van der Waals heterostructures incorporating γ-GeSe. The newly identified crystal symmetry of γ-GeSe warrants further studies on various physical properties of γ-GeSe.

摘要

IV-VI族单硫属化物家族具有原子级褶皱的层状结构,其原子键构型表明有可能实现各种多晶型物。在此,我们报告了首个来自IV-VI族单硫属化物家族的六方多晶型物的合成,该家族传统上为正交晶系。最近预测的四原子厚的六方GeSe,即所谓的γ-GeSe,已被合成,并通过包括元素分析、电子衍射、高分辨率透射电子显微镜成像和偏振拉曼光谱在内的互补结构表征得到明确识别。电学和光学测量表明,合成的γ-GeSe表现出3×10 S/m的高电导率,这与其他二维层状半金属晶体相当。此外,γ-GeSe可以直接生长在h-BN衬底上,展示了一种用于构建包含γ-GeSe的垂直范德华异质结构的自下而上方法。新确定的γ-GeSe晶体对称性值得对γ-GeSe的各种物理性质进行进一步研究。

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