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review article

Advances in solution-processed near-infrared light-emitting diodes

Vasilopoulou, Maria
•
Fakharuddin, Azhar
•
Pelayo Garcia de Arquer, F.
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September 1, 2021
Nature Photonics

A summary of recent advances in the near-infrared light-emitting diodes that are fabricated by solution-processed means, with coverage of devices based on organic semiconductors, halide perovskites and colloidal quantum dots.

Near-infrared light-emitting diodes based on solution-processed semiconductors, such as organics, halide perovskites and colloidal quantum dots, have emerged as a viable technological platform for biomedical applications, night vision, surveillance and optical communications. The recently gained increased understanding of the relationship between materials structure and photophysical properties has enabled the design of efficient emitters leading to devices with external quantum efficiencies exceeding 20%. Despite considerable strides made, challenges remain in achieving high radiance, reducing efficiency roll-off and extending operating lifetime. This Review summarizes recent advances on emissive materials synthetic methods and device key attributes that collectively contribute to improved performance of the fabricated light-emitting devices.

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Type
review article
DOI
10.1038/s41566-021-00855-2
Web of Science ID

WOS:000690917000009

Author(s)
Vasilopoulou, Maria
Fakharuddin, Azhar
Pelayo Garcia de Arquer, F.
Georgiadou, Dimitra G.
Kim, Hobeom  
Yusoff, Abd Rashid bin Mohd
Gao, Feng
Nazeeruddin, Mohammad Khaja  
Bolink, Henk J.
Sargent, Edward H.
Date Issued

2021-09-01

Publisher

Nature Publishing Group

Published in
Nature Photonics
Volume

15

Issue

9

Start page

656

End page

669

Subjects

Optics

•

Physics, Applied

•

Physics

•

amplified spontaneous emission

•

highly efficient

•

quantum dots

•

perovskite

•

electroluminescence

•

luminescence

•

devices

•

nanocrystals

•

complexes

•

diffusion

Editorial or Peer reviewed

REVIEWED

Written at

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September 11, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/181380
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