Side-Chain-Induced Rigid Backbone Organization of Polymer Semiconductors through Semifluoroalkyl Side Chains

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초록

While high-mobility p-type conjugated polymers have been widely reported, high-mobility n-type conjugated polymers are still rare. In the present work, we designed semifluorinated alkyl side chains and introduced them into naphthalene diimide-based polymers (PNDIF-T2 and PNDIF-TVT). We found that the strong self-organization of these side chains induced a high degree of order in the attached polymer backbones by forming a superstructure composed of "backbone crystals" and "side-chain crystals". This phenomenon was shown to greatly enhance the ordering along the backbone direction, and the resulting polymers thus exhibited unipolar n-channel transport in field-effect transistors with remarkably high electron mobility values of up to 6.50 cm(2) V-1 s(-1) and with a high on-off current ratio of 10(5).

키워드

FIELD-EFFECT TRANSISTORSTHIN-FILM TRANSISTORSSOLID-STATE ORDERCONJUGATED POLYMERSCHARGE-TRANSPORTSOLAR-CELLSORGANIC SEMICONDUCTORMOLECULAR PACKINGEFFECT MOBILITYHOLE MOBILITY
제목
Side-Chain-Induced Rigid Backbone Organization of Polymer Semiconductors through Semifluoroalkyl Side Chains
저자
Kang, BoseokKim, RanLee, Seon BaekKwon, Soon-KiKim, Yun-HiCho, Kilwon
DOI
10.1021/jacs.5b10445
발행일
2016-03
유형
Article
저널명
Journal of the American Chemical Society
138
11
페이지
3679 ~ 3686