Independent chemical/physical role of combustive exothermic heat in solution-processed metal oxide semiconductors for thin-film transistors

  • Kim, Seong Jip
  • Song, Ae Ran
  • Lee, Sun Sook
  • Nahm, Sahn
  • Choi, Youngmin
  • ... Chung, Kwun-Bum
  • 외 1명
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초록

The development of high performance, solution-processed metal-oxide semiconductors has been of paramount interest in various fields of electronic applications. Among the variety of methodologies for synthesizing solution-processed precursor solutions, the combustion chemistry reaction, which involves an internal exothermic heat reaction, has drawn a tremendous amount of attraction as one of the most viable chemical approaches. In this paper, we report the synthesis of new zinc-tin oxide (ZTO) precursor solutions that can be used to independently adjust the amount of combustive exothermic heat. Through comparative analyses based on X-ray photoelectron spectroscopy, spectroscopic ellipsometry, and X-ray absorption spectroscopy, the independent influence of combustive heat is elucidated in indium-free, solution-processed oxide semiconductors, in conjunction with an interpretation of observed variations in the device performance.

키워드

LOW-TEMPERATURE FABRICATIONBAND-EDGE STATESHIGH-PERFORMANCEDOPED ZNOSOL-GELMOBILITY
제목
Independent chemical/physical role of combustive exothermic heat in solution-processed metal oxide semiconductors for thin-film transistors
저자
Kim, Seong JipSong, Ae RanLee, Sun SookNahm, SahnChoi, YoungminChung, Kwun-BumJeong, Sunho
DOI
10.1039/c4tc02408g
발행일
2015-02
유형
Article
저널명
Journal of Materials Chemistry C
3
7
페이지
1457 ~ 1462