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Unusually Strong Near‐Infrared Photoluminescence of Highly Transparent Bulk InSe Flakes.

Authors :
Geng, Jamie
Zhang, Dehui
Kim, Inha
Kim, Hyong Min
Higashitarumizu, Naoki
Rahman, I K M Reaz
Lam, Lam
Ager, Joel W. III
Davydov, Albert V.
Krylyuk, Sergiy
Javey, Ali
Source :
Advanced Functional Materials. Sep2024, p1. 8p. 7 Illustrations.
Publication Year :
2024

Abstract

Bulk γ‐InSe has a direct bandgap of 1.24 eV, which corresponds to near infrared wavelengths (<italic>λ</italic> = 1.0 µm) useful in optoelectronic applications from biometric detectors to silicon photonics. However, its potential for optoelectronic applications is largely untapped due in part to the lack of quantitative studies of its optical properties. Here, the unusually low absorptance and high photoluminescence quantum efficiency of single‐crystalline InSe flakes with thickness in the hundreds of nanometers are studied. InSe emits brightly at room temperature from its direct bandgap with a peak photoluminescence quantum yield (PLQY) of 20%, despite displaying indirect bandgap like low absorption coefficient due to the symmetry of its crystal structure. By performing pump‐dependent PLQY measurements, the radiative and nonradiative recombination coefficients are extracted, including the Shockley‐Read‐Hall and Auger coefficients. Finally, a proof‐of‐concept alternating current electroluminescent device at low temperature is demonstrated to show the promise of InSe in optoelectronic technology such as highly transparent, bright NIR light sources. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1616301X
Database :
Academic Search Index
Journal :
Advanced Functional Materials
Publication Type :
Academic Journal
Accession number :
179761907
Full Text :
https://doi.org/10.1002/adfm.202413672