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Cited 16 time in webofscience Cited 16 time in scopus
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Enhancing dopant diffusion for ultrahigh electrical conductivity and efficient thermoelectric conversion in conjugated polymersopen access

Authors
Yoon, Sang EunKang, YeongkwonIm, JaeminLee, JiyunLee, Sang YeonPark, JaehongGao, Yuan JunJeon, DohyeonSon, Ji YoenKim, JisuKousseff, Christina J.Kim, TaekyeongSeo, HyungtakKang, KeehoonMcCulloch, IainKwak, Sang KyuChoi, Hyun HoKim, Bong-GiKim, Jong H.
Issue Date
Oct-2023
Publisher
Cell Press
Keywords
conjugated polymers; dopant diffusion; molecular doping; organic thermoelectric; power factor; semi-metallic electrical conductivity; solvent combination
Citation
Joule, v.7, no.10, pp 2291 - 2317
Pages
27
Indexed
SCIE
SCOPUS
Journal Title
Joule
Volume
7
Number
10
Start Page
2291
End Page
2317
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/68251
DOI
10.1016/j.joule.2023.09.002
ISSN
2542-4351
Abstract
Organic thermoelectric (TE) attracts considerable interest as a next-generation energy conversion technology; however, its practical application is still restricted by low power factors. Herein, we report a generally applicable solvent-combination doping method for improving TE properties of conjugated polymers (CPs). Residual solvents in a ternary solvent enlarged the free volume in the CP films. This beneficial effect boosted both dopant diffusion efficiency and charge carrier density in the doped films, resulting in the remarkable enhancement of electrical conductivity in the CPs. When the doped CP films processed with a ternary solvent were applied to TE devices, excellent power factors were achieved, attributed to a durable Seebeck coefficient along with ultrahigh electrical conductivity. © 2023 The Author(s)
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