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research article

Light Generation and Harvesting in a van der Waals Heterostructure

Lopez-Sanchez, Oriol
•
Alarcon Llado, Esther  
•
Koman, Volodymyr  
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2014
ACS Nano

Two-dimensional (2D) materials are a new type of materials under intense study because of their interesting physical properties and wide range of potential applications from nanoelectronics to sensing and photonics. Monolayers of semiconducting transition metal dichalcogenides MoS2 or WSe2 have been proposed as promising channel materials for field-effect transistors. Their high mechanical flexibility, stability, and quality coupled with potentially inexpensive production methods offer potential advantages compared to organic and crystalline bulk semiconductors. Due to quantum mechanical confinement, the band gap in monolayer MoS2 is direct in nature, leading to a strong interaction with light that can be exploited for building phototransistors and ultrasensitive photodetectors. Here, we report on the realization of light-emitting diodes based on vertical heterojunctions composed of n-type monolayer MoS2 and p-type silicon. Careful interface engineering allows us to realize diodes showing rectification and light emission from the entire surface of the heterojunction. Electroluminescence spectra show clear signs of direct excitons related to the optical transitions between the conduction and valence bands. Our p-n diodes can also operate as solar cells, with typical external quantum efficiency exceeding 4%. Our work opens up the way to more sophisticated optoelectronic devices such as lasers and heterostructure solar cells based on hybrids of 2D semiconductors and silicon.

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Type
research article
DOI
10.1021/nn500480u
Web of Science ID

WOS:000333539400124

Author(s)
Lopez-Sanchez, Oriol
Alarcon Llado, Esther  
Koman, Volodymyr  
Fontcuberta I. Morral, Anna  
Radenovic, Aleksandra  
Kis, Andras  
Date Issued

2014

Publisher

Amer Chemical Soc

Published in
ACS Nano
Volume

8

Start page

3042

End page

3048

Subjects

two-dimensional materials

•

dichalcogenides

•

MoS2

•

heterostructures

•

p-n junctions

•

nanophotonics

•

solar cells

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
LANES  
LBEN  
LMSC1  
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Available on Infoscience
March 7, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/101443
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