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Rhenium Diselenide (ReSe2) Near-Infrared Photodetector: Performance Enhancement by Selective p-Doping Technique

Authors
Kim, JinokHeo, KeunKang, Dong-HoShin, ChanghwanLee, SungjooYu, Hyun-YongPark, Jin-Hong
Issue Date
11월-2019
Publisher
WILEY
Keywords
HCl doping; p-doping; photodetector; ReSe2; selective doping; transition-metal dichalcogenides (TMDs); transistor
Citation
ADVANCED SCIENCE, v.6, no.21
Indexed
SCIE
SCOPUS
Journal Title
ADVANCED SCIENCE
Volume
6
Number
21
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/62035
DOI
10.1002/advs.201901255
ISSN
2198-3844
Abstract
In this study, a near-infrared photodetector featuring a high photoresponsivity and a short photoresponse time is demonstrated, which is fabricated on rhenium diselenide (ReSe2) with a relatively narrow bandgap (0.9-1.0 eV) compared to conventional transition-metal dichalcogenides (TMDs). The excellent photo and temporal responses, which generally show a trade-off relation, are achieved simultaneously by applying a p-doping technique based on hydrochloric acid (HCl) to a selected ReSe2 region. Because the p-doping of ReSe2 originates from the charge transfer from un-ionized Cl molecules in the HCl to the ReSe2 surface, by adjusting the concentration of the HCl solution from 0.1 to 10 m, the doping concentration of the ReSe2 is controlled between 3.64 x 10(10) and 3.61 x 10(11) cm(-2). Especially, the application of the selective HCl doping technique to the ReSe2 photodetector increases the photoresponsivity from 79.99 to 1.93 x 10(3) A W-1, and it also enhances the rise and decay times from 10.5 to 1.4 ms and from 291 to 3.1 ms, respectively, compared with the undoped ReSe2 device. The proposed selective p-doping technique and its fundamental analysis will provide a scientific foundation for implementing high-performance TMD-based electronic and optoelectronic devices.
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공과대학 (전기전자공학부)
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