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Effect of Fluorination Position on the Crystalline Structure and Stretchability of Intrinsically Stretchable Polymer Semiconductors

Title
Effect of Fluorination Position on the Crystalline Structure and Stretchability of Intrinsically Stretchable Polymer Semiconductors
Authors
ShinHyerinKimYejinSungMingiAhnHyungjuYooHyeonjinParkKwang HyunSongSung HoLeeJunghoonByoung Hoon
Ewha Authors
이병훈
SCOPUS Author ID
이병훈scopus
Issue Date
2023
Journal Title
ACS Macro Letters
ISSN
2161-1653JCR Link
Citation
ACS Macro Letters vol. 12, no. 11, pp. 1569 - 1575
Publisher
American Chemical Society
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
A clear understanding of the structure-property relationship of intrinsically stretchable polymer semiconductors (ISPSs) is essential for developing high-performance polymer-based electronics. Herein, we investigate the effect of the fluorination position on the crystalline structure, charge-carrier mobility, and stretchability of polymer semiconductors based on a benzodithiophene-co-benzotriazole configuration. Although four different polymer semiconductors showed similar field-effect mobilities for holes (μ ≈ 0.1 cm2 V-1 s-1), polymer semiconductors with nonfluorinated backbones exhibited improved thin-film stretchability confirmed with crack onset strain (ϵc ≈ 20%-50%) over those of fluorinated counterparts (ϵc ≤ 10%). The enhanced stretchability of polymer semiconductors with a nonfluorinated backbone is presumably due to the higher face-on crystallite ratio and π-π stacking distance in the out-of-plane direction than those of the other polymer semiconductors. These results provide new insights into how the thin-film stretchability of polymer semiconductors can be improved by using precise molecular tailoring without deteriorating electrical properties. © 2023 American Chemical Society.
DOI
10.1021/acsmacrolett.3c00517
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공과대학 > 화공신소재공학과 > Journal papers
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