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二硫化钨单层在双层石墨烯上的激子效应。

Excitonic Effects in Tungsten Disulfide Monolayers on Two-Layer Graphene.

机构信息

National Physical Laboratory , Hampton Road, Teddington TW11 0LW, United Kingdom.

Advanced Technology Institute, University of Surrey , Guildford GU2 7XH, United Kingdom.

出版信息

ACS Nano. 2016 Aug 23;10(8):7840-6. doi: 10.1021/acsnano.6b03518. Epub 2016 Jul 22.

Abstract

Light emission in atomically thin heterostructures is known to depend on the type of materials and the number and stacking sequence of the constituent layers. Here we show that the thickness of a two-dimensional substrate can be crucial in modulating the light emission. We study the layer-dependent charge transfer in vertical heterostructures built from monolayer tungsten disulfide (WS2) on one- and two-layer epitaxial graphene, unravelling the effect that the interlayer electronic coupling has on the excitonic properties of such heterostructures. We bring evidence that the excitonic properties of WS2 can be effectively tuned by the number of supporting graphene layers. Integrating WS2 monolayers with two-layer graphene leads to a significant enhancement of the photoluminescence response, up to 1 order of magnitude higher compared to WS2 supported on one-layer graphene. Our findings highlight the importance of substrate engineering when constructing atomically thin-layered heterostructures.

摘要

原子层状异质结构中的发光现象已知取决于材料的类型以及组成层的数量和堆叠顺序。在这里,我们表明二维衬底的厚度在调节发光方面可能是至关重要的。我们研究了由单层二硫化钨(WS2)在单层和双层外延石墨烯上构建的垂直异质结构中的层依赖电荷转移,揭示了层间电子耦合对这种异质结构的激子性质的影响。我们有证据表明,WS2 的激子性质可以通过支撑石墨烯层的数量来有效调节。将 WS2 单层与双层石墨烯集成在一起,可使光致发光响应显著增强,与在单层石墨烯上支撑的 WS2 相比,高达 1 个数量级。我们的研究结果强调了在构建原子层状异质结构时衬底工程的重要性。

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