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具有空间组成调制的二维 WSSe 纳米片。

Spatially composition-modulated two-dimensional WSSe nanosheets.

机构信息

Key Laboratory for Micro-Nano Physics and Technology of Hunan Province, School of Physics and Electronic Science, and State Key Laboratory of Chemo/Biosensing and Chemometrics, Hunan University, Changsha, Hunan 410082, P. R. China.

Institute of Physical and Theoretical Chemistry and LISA+, University of Tübingen, Auf der Morgenstelle 18, 72076 Tübingen, Germany.

出版信息

Nanoscale. 2017 Apr 6;9(14):4707-4712. doi: 10.1039/c7nr00272f.

Abstract

Controllable synthesis of two-dimensional (2D) transition-metal dichalcogenides (TMDs) with tunable bandgaps is vital for their applications in nanophotonics, due to its efficient modulation of the physical and chemical properties of these atomic layered nanostructures. Here we report for the first time, the controllable synthesis of spatially composition-modulated WSSe nanosheets and WS-WSSe lateral heterostructures by a developed one-step chemical vapor deposition (CVD) approach, as well as the understanding of their growth mechanism. During the growth, the composition was optically tuned along the plane of the atomic layered nanosheets through the precise control of evaporation sources. Microstructure characterization confirms the chemical identity of the composition modulated nanosheets, with S and Se contents gradually converting from the center to the edge. Local photoluminescence (PL) and Raman studies further demonstrate the position-dependent optical properties of the as-grown nanosheets, with the PL peak and Raman modes shifting in a wide range along the whole plane of the nanostructures, which are consistent with their tunable compositions and bandgaps. This demonstration of composition-modulated nanostructures provides a beneficial approach for the preparation of 2D semiconductor heterostructures and may open up a wide range of applications in nanoelectronics and optoelectronics.

摘要

可控合成具有可调带隙的二维(2D)过渡金属二硫属化物(TMDs)对于它们在纳米光子学中的应用至关重要,因为它可以有效地调节这些原子层状纳米结构的物理和化学性质。在这里,我们首次通过开发的一步化学气相沉积(CVD)方法报告了空间组成调制的 WSSe 纳米片和 WS-WSSe 横向异质结构的可控合成,以及对其生长机制的理解。在生长过程中,通过精确控制蒸发源,在原子层状纳米片的平面上进行光学调谐以改变组成。微结构表征证实了组成调制纳米片的化学特性,其中 S 和 Se 的含量从中心逐渐转化到边缘。局部光致发光(PL)和拉曼研究进一步证明了所生长纳米片的位置相关光学性质,随着 PL 峰和 Raman 模式沿着整个纳米结构的整个平面大范围移动,这与它们可调谐的组成和带隙一致。这种组成调制纳米结构的演示为 2D 半导体异质结构的制备提供了一种有益的方法,并可能在纳米电子学和光电子学中开辟广泛的应用。

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