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Lee, Geunsik
Computational Research on Electronic Structure and Transport in Condensed Materials
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Stoichiometric Engineering of Cs2AgBiBr6 for Photomultiplication- Type Photodetectors

Author(s)
Jagadeeswararao, MetikotiSim, Kyu MinLee, SangjunKang, MingyunAn, SanghyeokNam, Geon-HeeSim, Hye RyunOleiki, ElhamLee, GeunsikChung, Dae Sung
Issued Date
2023-04
DOI
10.1021/acs.chemmater.2c03271
URI
https://scholarworks.unist.ac.kr/handle/201301/64256
Citation
CHEMISTRY OF MATERIALS, v.35, no.8, pp.3095 - 3104
Abstract
Photomultiplication (PM)-type photodetectors with a high external quantum efficiency (EQE) can be realized through adequately engineered trap states and trap-assisted charge injection. By strategically introducing slightly rich Bi and highly rich Br stoichiometric conditions, efficient trap states are realized for holes in lead-free Cs1.98AgBi1.15Br7.9 double perovskite (DP). With the diode structure of ITO/SnO2/Cs1.98AgBi1.15Br7.9/poly(3-hexylthiophene) (P3HT)/MoOx/Ag, where SnO2 and P3HT layers are used as the hole-and electron-blocking layers, respectively, successful realization of the selective hole trap and the resulting band bending/electron injection at the anode interface is demonstrated. As a result, a high EQE of similar to 16,000%, responsivity of similar to 50 A W-1, and specific detectivity of over 1012 Jones at -3 V are demonstrated. The origin of the suggested PM mechanism is discussed using photophysical and optoelectronic measurements and theoretical studies. This work ensures the successful demonstration of PM-type photodetectors using lead-free Cs2AgBiBr6 DP through strategic trap engineering.
Publisher
AMER CHEMICAL SOC
ISSN
0897-4756
Keyword
HALIDE DOUBLE PEROVSKITEPOLYMER PHOTODETECTORSSPECTRAL RESPONSEHIGH-PERFORMANCENARROW-BANDHIGH-GAINUVPHOTOLUMINESCENCEEFFICIENCYEMISSION

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