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김동석

Kim, Dong Suk
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Ion-modulated radical doping of spiro-OMeTAD for more efficient and stable perovskite solar cells

Author(s)
Zhang, TiankaiWang, FengKim, Hak-BeomChoi, In-WooWang, ChuanfeiCho, EunkyungKonefal, RafalPuttisong, YuttapoomTerado, KosukeKobera, LiborChen, MengyunYang, MeiBai, SaiYang, BowenSuo, JiajiaYang, Shih-ChiLiu, XianjieFu, FanYoshida, HiroyukiChen, Weimin M.Brus, JiriCoropceanu, VeaceslavHagfeldt, AndersBredas, Jean-LucFahlman, MatsKim, Dong SukHu, ZhangjunGao, Feng
Issued Date
2022-07
DOI
10.1126/science.abo2757
URI
https://scholarworks.unist.ac.kr/handle/201301/60193
Citation
SCIENCE, v.377, no.6605, pp.495 - 501
Abstract
Record power conversion efficiencies (PCEs) of perovskite solar cells (PSCs) have been obtained with the organic hole transporter 2,2',7,7'-tetrakis(N,N-di-p-methoxyphenyl-amine)9,9'-spirobifluorene (spiro-OMeTAD). Conventional doping of spiro-OMeTAD with hygroscopic lithium salts and volatile 4-tert-butylpyridine is a time-consuming process and also leads to poor device stability. We developed a new doping strategy for spiro-OMeTAD that avoids post-oxidation by using stable organic radicals as the dopant and ionic salts as the doping modulator (referred to as ion-modulated radical doping). We achieved PCEs of >25% and much-improved device stability under harsh conditions. The radicals provide hole polarons that instantly increase the conductivity and work function (WF), and ionic salts further modulate the WF by affecting the energetics of the hole polarons. This organic semiconductor doping strategy, which decouples conductivity and WF tunability, could inspire further optimization in other optoelectronic devices.
Publisher
AMER ASSOC ADVANCEMENT SCIENCE
ISSN
0036-8075
Keyword
STABILITYPERFORMANCEINTERLAYERSVOLTAGEORGANIC SEMICONDUCTORSP-DOPANTTRANSPORTIMPACTOXYGENSTATES

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