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层状硫族化物材料结晶过程中化学键的维度转变

Dimensional transformation of chemical bonding during crystallization in a layered chalcogenide material.

作者信息

Saito Yuta, Hatayama Shogo, Shuang Yi, Fons Paul, Kolobov Alexander V, Sutou Yuji

机构信息

Device Technology Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba Central 5, Higashi 1-1-1, Tsukuba, 305-8565, Japan.

Department of Materials Science, Graduate School of Engineering, Tohoku University, 6-6-11 Aoba-yama, Sendai, 980-8579, Japan.

出版信息

Sci Rep. 2021 Mar 8;11(1):4782. doi: 10.1038/s41598-020-80301-5.

Abstract

Two-dimensional (2D) van der Waals (vdW) materials possess a crystal structure in which a covalently-bonded few atomic-layer motif forms a single unit with individual motifs being weakly bound to each other by vdW forces. CrGeTe is known as a 2D vdW ferromagnetic insulator as well as a potential phase change material for non-volatile memory applications. Here, we provide evidence for a dimensional transformation in the chemical bonding from a randomly bonded three-dimensional (3D) disordered amorphous phase to a 2D bonded vdW crystalline phase. A counterintuitive metastable "quasi-layered" state during crystallization that exhibits both "long-range order and short-range disorder" with respect to atomic alignment clearly distinguishes the system from conventional materials. This unusual behavior is thought to originate from the 2D nature of the crystalline phase. These observations provide insight into the crystallization mechanism of layered materials in general, and consequently, will be useful for the realization of 2D vdW material-based functional nanoelectronic device applications.

摘要

二维(2D)范德华(vdW)材料具有一种晶体结构,其中通过共价键结合的几个原子层基序形成一个单一单元,各个基序通过范德华力彼此弱结合。CrGeTe是一种二维范德华铁磁绝缘体,也是用于非易失性存储器应用的潜在相变材料。在此,我们提供了化学键从随机键合的三维(3D)无序非晶相转变为二维键合的范德华晶相的证据。结晶过程中出现的一种违反直觉的亚稳态“准层状”状态,在原子排列方面表现出“长程有序和短程无序”,这明显将该系统与传统材料区分开来。这种不寻常的行为被认为源于晶相的二维性质。这些观察结果为一般层状材料的结晶机制提供了见解,因此,将有助于实现基于二维范德华材料的功能性纳米电子器件应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e606/7940477/d96ba81496f2/41598_2020_80301_Fig1_HTML.jpg

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