High performance n-type organic-inorganic nanohybrid semiconductors for flexible electronic devices

  • Park, Yerok
  • Han, Kyu S.
  • Lee, Byoung H.
  • Cho, Sangho
  • Lee, Kwang H.
  • ... Sung, Myung M.
  • 외 1명
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25

초록

We report a high-performance and air-stable flexible and invisible semiconductor which can be substitute for the n-type organic semiconductors. N-type organic-inorganic nanohybrid superlattices were developed for active semiconducting channel layers of thin film transistors at low temperature of 150 degrees C by using molecular layer deposition with atomic layer deposition. In these nanohybrid superlattices, self-assembled organic layers (SAOLs) offer structural flexibility, whereas ZnO inorganic layers provide the potential for semiconducting properties, and thermal and mechanical stability. The prepared SAOLs-ZnO nanohybrid thin films exhibited good thermal and mechanical stability, good flexibility, transparent in the visible range, and excellent field effect mobility (>7cm(2)/V s) under low voltage operation (from -1 to 3 V). The nanohybrid semiconductor is also compatible with pentacene in p-n junction diodes.

키워드

Organic-inorganic nanohybrid semiconductorsMolecular layer depositionAtomic layer depositionZnOOrganic thin film transistorsTHIN-FILM TRANSISTORSFIELD-EFFECT TRANSISTORSMOLECULAR LAYER DEPOSITIONHIGH-MOBILITYLARGE-AREAMONOLAYER-PRECISIONCONJUGATED POLYMERSSUPERLATTICESFABRICATIONSTABILITY
제목
High performance n-type organic-inorganic nanohybrid semiconductors for flexible electronic devices
저자
Park, YerokHan, Kyu S.Lee, Byoung H.Cho, SanghoLee, Kwang H.Im, SeongilSung, Myung M.
DOI
10.1016/j.orgel.2010.11.026
발행일
2011-02
유형
Article
저널명
Organic Electronics: physics, materials, applications
12
2
페이지
348 ~ 352