Alkyl Chain Length Dependence of the Field-Effect Mobility in Novel Anthracene Derivatives

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초록

We report six asymmetric alkylated anthracene-based molecules with different alkyl side chain lengths for use in organic field-effect transistors (OFETs). Alkyl side chains can potentially improve the solubility and processability of anthracene derivatives. The crystallinity and charge mobility of the anthracene derivatives may be improved by optimizing the side chain length. The highest field-effect mobility of the devices prepared here was 0.55 cm2/(V s), for 2-(p-pentylphenylethynyl)anthracene (PPEA). The moderate side chain length appeared to be optimal for promoting self-organization among asymmetric anthracene derivatives in OFETs, and was certainly better than the short or long alkyl side chain lengths, as confirmed by X-ray diffraction measurements. © 2014 American Chemical Society.

키워드

organic field-effect transistor (OFET)alkyl chain lengthasymmetric anthracenestructure-mobility relationshipcrystal orientationTHIN-FILM TRANSISTORSEND-CAPPED OLIGOMERSHIGH-PERFORMANCEORGANIC SEMICONDUCTORSFUNCTIONALIZED ACENESMOLECULAR-STRUCTUREPENTACENEAGGREGATIONSOLVENTCHANNEL
제목
Alkyl Chain Length Dependence of the Field-Effect Mobility in Novel Anthracene Derivatives
저자
Back, Jang YeolAn, Tae KyuCheon, Ye RimCha, HyojungJang, JaeyoungKim, YebyeolBaek, YonghwaChung, Dae SungKwon, Soon-KiPark, Chan EonKim, Yun-Hi
DOI
10.1021/am5063103
발행일
2015-01
유형
Article
저널명
ACS Applied Materials and Interfaces
7
1
페이지
351 ~ 358