2D MoS 2 /Au Interfaces For Enhanced Opto–Electronic Response With Sub‐Bandgap Photons

ABSTRACT Monolayer is a direct bandgap semiconductor with potential applications in optoelectronics and photonics. also has a large optical nonlinearity. However, the atomic thickness of the monolayer limits the strength of the measured functional signals, such as the photocurrent or photoluminescence, in optoelectronic devices. Here, we show that photocurrent in monolayer can be induced by sub‐bandgap photons by depositing Au nanoparticles on it. In this system, the nonlinear light–matter interaction in Au nanoparticles enhanced by the localized surface plasmons results in the generation of supercontinuum, which is reabsorbed by due to efficient resonant energy transfer. Au nanoparticle assisted photocurrent is more than an order of magnitude larger than two‐photon photocurrent in monolayer . Optimization of the shape, size and composition of the nanoparticle has the potential to enhance the photocurrent significantly with the prospect of applications in the detection of NIR photons, and related technologies including optical telecommunication.

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Publication Details

Journal
Advanced Optical Materials
Published
2026-09-18
DOI
https://doi.org/10.1002/adom.71787
Primary Topic
2D Materials and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

2D MoS 2 /Au Interfaces For Enhanced Opto–Electronic Response With Sub‐Bandgap Photons

吴锦雷, Zuoti Xie, Elissaios Stavrou, Khadga Jung Karki et al.
Advanced Optical Materials
2D Materials and Applications
article

2D MoS 2 /Au Interfaces For Enhanced Opto–Electronic Response With Sub‐Bandgap Photons

吴锦雷, Zuoti Xie, Elissaios Stavrou, Khadga Jung Karki, Jin‐Hui Zhong, Wei Huang, Ahsan Ali, Yuhong Chen
article en

Abstract

ABSTRACT Monolayer is a direct bandgap semiconductor with potential applications in optoelectronics and photonics. also has a large optical nonlinearity. However, the atomic thickness of the monolayer limits the strength of the measured functional signals, such as the photocurrent or photoluminescence, in optoelectronic devices. Here, we show that photocurrent in monolayer can be induced by sub‐bandgap photons by depositing Au nanoparticles on it. In this system, the nonlinear light–matter interaction in Au nanoparticles enhanced by the localized surface plasmons results in the generation of supercontinuum, which is reabsorbed by due to efficient resonant energy transfer. Au nanoparticle assisted photocurrent is more than an order of magnitude larger than two‐photon photocurrent in monolayer . Optimization of the shape, size and composition of the nanoparticle has the potential to enhance the photocurrent significantly with the prospect of applications in the detection of NIR photons, and related technologies including optical telecommunication.

Advanced Optical Materials
Technion – Israel Institute of Technology (IL), Southern University of Science and Technology (CN), Shenzhen Bay Laboratory (CN), Guangdong Technion-Israel Institute of Technology (CN)
Li Ka Shing Foundation, Ministry of Science and Technology of the People's Republic of China, Guangdong Science and Technology Department
Affordable and clean energy
Openalex Percentile: Top 24%
2D Materials and Applications
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2D MoS 2 /Au Interfaces For Enhanced Opto–Electronic Response With Sub‐Bandgap Photons — 吴锦雷, Zuoti Xie, et al. · Advanced Optical Materials (2026) | TGRS Research Map | TGRS