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High-Performance and Stability of CsPbBr3/WSe2 Hybrid Photodetectors Functionalized Using Quaternary Ammonium Ligands

Title
High-Performance and Stability of CsPbBr3/WSe2 Hybrid Photodetectors Functionalized Using Quaternary Ammonium Ligands
Author(s)
Moon, BowonAhn, Jae-HyeonJeong, Min-HyeLee, Sang‐HyeonLee, Jong-Soo
Issued Date
2023-09
Citation
Advanced Optical Materials, v.11, no.17
Type
Article
Author Keywords
detectivityhybrid photodetectorsperovskite quantum dotssurface ligand exchangetransition metal dichalcogenidestunable bandgap
Keywords
LIGHT-EMITTING-DIODESPEROVSKITENANOCRYSTALSCSPBX3EFFICIENCYEMISSIONMOS2BR
ISSN
2195-1071
Abstract
The 2D–0D hybrid photodetector, with its special structure, high sensitivity, and wavelength tunability, is reported as a promising candidate system for optoelectronic devices. As research on hybrid lead halide perovskite quantum dots (PQDs) has progressed, PQDs with high photoluminescence (PL) quantum yield and excellent absorption properties are increasingly applied in optoelectronic devices; however, PQD stability remains one of the biggest limitations on device performance. Here, it is reported that the properties and stability of the hybrid photodetectors are improved by surface passivation using the quaternary ammonium ligand (didodecyldimethylammonium bromide, DDAB). The average carrier lifetime of DDAB treated CsPbBr3 PQDs (DDAB-capped PQDs) is longer than that of pristine CsPbBr3 PQDs by 6.68–14.88ns. It is confirmed that the durability against water is reduced by only 25.8% at PL intensity and is preserved for more than 16h. A 2D–0D hybrid photodetector is then fabricated by deposition of DDAB-capped PQDs on the WSe2 field-effect transistor device for a high-performance photodetector. The WSe2/DDAB-capped PQD hybrid photodetector exhibits an enhanced responsivityof 1.4×103AW−1 and an improved detectivity of 3.1×1013Jones under 40.0µWcm−2 of a 405nm laser. © 2023 Wiley-VCH GmbH.
URI
http://hdl.handle.net/20.500.11750/46543
DOI
10.1002/adom.202300414
Publisher
John Wiley and Sons Inc.
Related Researcher
  • 이종수 Lee, Jong-Soo
  • Research Interests Design of new type of multifunctional nanoparticles for energy-related devices; 다기능성 나노재료; 무기물 태양전지; 열전소자
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Department of Energy Science and Engineering MNEDL(Multifunctional Nanomaterials & Energy Devices Lab) 1. Journal Articles

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