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Nanocluster-based ultralow-temperature driven oxide gate dielectrics for high-performance organic electronic devices
- Jo, Jeong-Wan;
- Kang, Jingu;
- Kim, Kyung-Tae;
- Kang, Seung-Han;
- Shin, Jae-Cheol;
- ... Park, Sung Kyu;
- 외 2명
WEB OF SCIENCE
3SCOPUS
3초록
The development of novel dielectric materials with reliable dielectric properties and low-temperature processibility is crucial to manufacturing flexible and high-performance organic thin-film transistors (OTFTs) for next-generation roll-to-roll organic electronics. Here, we investigate the solution-based fabrication of high-k aluminum oxide (Al2O3) thin films for high-performance OTFTs. Nanocluster-based Al2O3 films fabricated by highly energetic photochemical activation, which allows low-temperature processing, are compared to the conventional nitrate-based Al2O3 films. A wide array of spectroscopic and surface analyses show that ultralow-temperature photochemical activation (<60 °C) induces the decomposition of chemical impurities and causes the densification of the metal-oxide film, resulting in a highly dense high-k Al2O3 dielectric layer from Al-13 nanocluster-based solutions. The fabricated nanocluster-based Al2O3 films exhibit a low leakage current density (<10–7 A/cm2) at 2 MV/cm and high dielectric breakdown strength (>6 MV/cm). Using this dielectric layer, precisely aligned microrod-shaped 2,7-dioctyl[1]benzothieno [3,2-b][1] benzothiophene (C8-BTBT) single-crystal OTFTs were fabricated via solvent vapor annealing and photochemical patterning of the sacrificial layer. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
키워드
- 제목
- Nanocluster-based ultralow-temperature driven oxide gate dielectrics for high-performance organic electronic devices
- 저자
- Jo, Jeong-Wan; Kang, Jingu; Kim, Kyung-Tae; Kang, Seung-Han; Shin, Jae-Cheol; Shin, Seung Beom; Kim, Yong-Hoon; Park, Sung Kyu
- 발행일
- 2020-12
- 유형
- Article
- 저널명
- Materials
- 권
- 13
- 호
- 23
- 페이지
- 1 ~ 10
- 언어
- ENG
- 출판사
- MDPI AG
- 발행국가
- 스위스
- 분량
- 10 페이지
- ISSN
- E 1996-1944
P 1996-1944