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金属种子层厚度诱导 MoS2 和 WS2 从垂直生长到水平生长的转变。

Metal seed layer thickness-induced transition from vertical to horizontal growth of MoS2 and WS2.

机构信息

Department of Mechanical Engineering and Materials Science, Yale University , New Haven, Connecticut 06511, United States.

出版信息

Nano Lett. 2014 Dec 10;14(12):6842-9. doi: 10.1021/nl502570f. Epub 2014 Nov 20.

Abstract

Two-dimensional (2D), layered transition metal dichalcogenides (TMDCs) can grow in two different growth directions, that is, horizontal and vertical. In the horizontal growth, 2D TMDC layers grow in planar direction with their basal planes parallel to growth substrates. In the vertical growth, 2D TMDC layers grow standing upright on growth substrates exposing their edge sites rather than their basal planes. The two distinct morphologies present unique materials properties suitable for specific applications, such as horizontal TMDCs for optoelectronics and vertical TMDCs for electrochemical reactions. Precise control of the growth orientation is essential for realizing the true potential of these 2D materials for large-scale, practical applications. In this Letter, we investigate the transition of vertical-to-horizontal growth directions in 2D molybdenum (or tungsten) disulfide and study the underlying growth mechanisms and parameters that dictate such transition. We reveal that the thickness of metal seed layers plays a critical role in determining their growth directions. With thick (>∼ 3 nm) seed layers, the vertical growth is dominant, while the horizontal growth occurs with thinner seed layers. This finding enables the synthesis of novel 2D TMDC heterostructures with anisotropic layer orientations and transport properties. The present study paves a way for developing a new class of 2D TMDCs with unconventional materials properties.

摘要

二维(2D)、层状过渡金属二卤化物(TMDCs)可以沿两个不同的生长方向生长,即水平和垂直方向。在水平生长中,2D TMDC 层以其基面平行于生长衬底的平面方向生长。在垂直生长中,2D TMDC 层垂直于生长衬底生长,暴露其边缘而不是基面。这两种截然不同的形态呈现出独特的材料特性,适用于特定的应用,例如水平 TMDC 适用于光电应用,而垂直 TMDC 适用于电化学反应。精确控制生长方向对于实现这些 2D 材料在大规模实际应用中的真正潜力至关重要。在这封信中,我们研究了二维钼(或钨)二硫化物中垂直到水平生长方向的转变,并研究了决定这种转变的潜在生长机制和参数。我们揭示了金属种子层的厚度在决定其生长方向方面起着关键作用。具有较厚(>∼3nm)种子层的情况下,垂直生长占主导地位,而较薄种子层则会发生水平生长。这一发现使得合成具有各向异性层取向和输运性质的新型 2D TMDC 异质结构成为可能。本研究为开发具有非常规材料特性的新型 2D TMDC 开辟了道路。

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