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二维核壳生长模式形成的单层 MoS 中隐藏良好的晶界。

Well-Hidden Grain Boundary in the Monolayer MoS Formed by a Two-Dimensional Core-Shell Growth Mode.

机构信息

College of Chemistry and Materials Engineering, Wenzhou University , Wenzhou 325035, China.

Department of Surgery & Central Laboratory, The First Affiliated Hospital of Anhui Medical University , Hefei 230022, China.

出版信息

ACS Nano. 2017 Oct 24;11(10):10608-10615. doi: 10.1021/acsnano.7b06232. Epub 2017 Sep 22.

Abstract

Guided by the hexagonal lattice symmetry, triangles and hexagons are the most basic morphological units for two-dimensional (2D) transition metal dichalcogenides (TMDs) synthesized by chemical vapor deposition (CVD). Also, it is widely acknowledged that these units start from the single nucleation site and then grow epitaxially. Accordingly, the triangular monolayer (ML) samples are generally considered as single crystals. Here, we report a 2D core-shell growth mode in the CVD process for ML-MoS, which leads to one kind of "pseudo" single-crystal triangles containing triangular outline grain boundaries (TO-GBs). It is difficult to be optically distinguished from the "true" single-crystal triangles. The weakening of Raman peaks and the remarkable enhancement of photoluminescence (PL) are found at the built-in TO-GBs, which could be useful for high-performance optoelectronics. In addition, the electrical measurements indicate that the TO-GBs are conductive. Furthermore, TO-GBs and the common grain boundaries (CO-GBs) can coexist in a single flake, whereas their optical visibility and optical modifications (Raman and PL) are quite different. This work is helpful in further understanding the growth mechanism of 2D TMD materials and may also play a significant role in related nanodevices.

摘要

在六方晶格对称性的指导下,三角形和六边形是通过化学气相沉积(CVD)合成的二维(2D)过渡金属二卤代物(TMD)的最基本形态单元。此外,人们普遍认为这些单元从单个成核点开始外延生长。因此,三角形单层(ML)样品通常被认为是单晶。在这里,我们报告了 ML-MoS 在 CVD 过程中的二维核壳生长模式,导致了一种包含三角形外形晶界(TO-GBs)的“伪”单晶三角形。它很难从“真正的”单晶三角形中光学区分出来。在内置的 TO-GBs 处发现拉曼峰减弱和光致发光(PL)显著增强,这对于高性能光电应用可能是有用的。此外,电测量表明 TO-GBs 是导电的。此外,TO-GBs 和常见的晶界(CO-GBs)可以共存于单个薄片中,但其光学可见性和光学修饰(拉曼和 PL)却有很大的不同。这项工作有助于进一步理解二维 TMD 材料的生长机制,也可能在相关纳米器件中发挥重要作用。

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