Development and Characterization of Solution-Processable Dithieno[3,2-b: 2',3'-d]thiophenes Derivatives with Various End-capped Groups for Organic Field-Effect Transistors

  • Kang, Hyunwoo
  • Jang, Yuhyeon
  • Ho, Dongil
  • Ryu, Soomin
  • Kim, Choongik
  • 외 1명
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초록

In this paper, four organic materials based on dithieno[3,2-b : 2',3'-d]thiophene (DTT) core structure with end-capping groups (phenyl and thienyl) and linker (acetylenic and olefinic) between DTT-core and end-capping groups were synthesized and characterized as solution-processable organic semiconductors (OSCs) for organic field-effect transistors (OFETs). Thermal, optical, and electrochemical properties of the corresponding materials were determined. Next, all DTT-derivatives were coated by solution-shearing method, and the thin-film microstructures and morphologies were investigated. To investigate the electrical performance of four newly synthesized DTT-derivatives, bottom-gate/top-contact OFETs were fabricated and characterized in ambient condition. It was found that substitution of acetylenic for olefinic linkers between DTT-cores and end-capping groups enhanced device performance. Especially, the resulting OFETs based on the compound containing phenylacetylene exhibited the highest hole mobility of 0.15 cm(2)/Vs and current on/off ratio of similar to 10(6), consistent with film morphology and texture showing long range interconnected crystalline grains and strong diffraction peaks.

키워드

dithieno[3,2-b,2',3'-d]thiopheneorganic field-effect transistororganic semiconductorssolution-processTHIN-FILM TRANSISTORSHIGH-PERFORMANCESMALL-MOLECULESTHIOPHENE DERIVATIVESSEMICONDUCTORSDITHIENOTHIOPHENEDIKETOPYRROLOPYRROLEPOLYMERSMOBILITYOLIGOTHIOPHENES
제목
Development and Characterization of Solution-Processable Dithieno[3,2-b: 2',3'-d]thiophenes Derivatives with Various End-capped Groups for Organic Field-Effect Transistors
저자
Kang, HyunwooJang, YuhyeonHo, DongilRyu, SoominKim, ChoongikSeo, SungYong
DOI
10.1002/cplu.202200267
발행일
2022-10
유형
Article
저널명
ChemPlusChem
87
10