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Research Article

Emergence of photoluminescence on bulk MoS2 by laser thinning and gold particle decoration

Lili Gong1Qi Zhang1Liangjun Wang1Jianfeng Wu1Cheng Han1Bo Lei1Wei Chen1,2,3Goki Eda1,2,3Kuan Eng Johnson Goh4,1Chorng Haur Sow1,3( )
Department of Physics National University of SingaporeSingapore117542Singapore
Department of Chemistry National University of SingaporeSingapore117542Singapore
Centre for Advanced 2D Materials and Graphene Research Centre National University of Singapore 6 Science Drive 2Singapore117546Singapore
Institute of Materials Research and Engineering Agency for Science Technology and Research (A*STAR) 2 Fusionopolis Way Innovis #08-03Singapore138634Singapore
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Abstract

We demonstrate a facile and effective approach to significantly improve the photoluminescence of bulk MoS2 via laser thinning followed by gold particle decoration. Upon laser thinning of exfoliated bulk MoS2, photoluminescence emerges from the laser-thinned region. After further treatment with an AuCl3 solution, gold particles self-assemble on the laser-thinned region and thick edges, further increasing the fluorescence of bulk MoS2 28 times and the Raman response 3 times. Such fluorescence enhancement can be attributed to both surface plasmon resonance and p-type doping induced by gold particles. The combination of laser thinning and AuCl3 treatment enables the functionalization of bulk MoS2 for optoelectronic applications. It can also provide a viable strategy for mask-free and area-selective p-type doping on single MoS2 flakes.

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Nano Research
Pages 4574-4586

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Cite this article:
Gong L, Zhang Q, Wang L, et al. Emergence of photoluminescence on bulk MoS2 by laser thinning and gold particle decoration. Nano Research, 2018, 11(9): 4574-4586. https://doi.org/10.1007/s12274-018-2037-5

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Received: 11 December 2017
Revised: 11 February 2018
Accepted: 27 February 2018
Published: 16 March 2018
© Tsinghua University Press and Springer-Verlag GmbH Germany, part of Springer Nature 2018