Surface Treatment of Indium-Tin-Oxide Substrates and Its Effects on Initial Nucleation Processes of Diamine Films
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概要
- 論文の詳細を見る
The effects of several surface treatment techniques for indium-tin-oxide (ITO) substrates on the surface properties and the initial nucleation processes of trisphenyldiamine (TPD) have been investigated. Mechanical rubbing, HCl treatment, and O2-plasma irradiation smoothen the ITO surface and enhance the cohesion of TPD molecules. As-received ITO surfaces promote amorphous structure of the TPD molecules; this results in effective carrier transport, but the substrate surface is too rough on a molecular scale for the fabrication of very thin ( e.g., ≤200 Å) layered structures. Layer-by-layer amorphous nucleation on flat surfaces is a key technology for the fabrication of future organic electroluminescence (EL) device structures with very thin constituent layers. O2-plasma treatment reduces the potential barrier for hole injection from ITO to TPD with moderate cohesion of TPD molecules, and results in brighter EL devices than those on as-received ITO substrates.
- Publication Office, Japanese Journal of Applied Physics, Faculty of Science, University of Tokyoの論文
- 1997-01-15
著者
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Fujita S
Department Of Electronic Science And Engineering Kyoto University
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藤田 静雄
京大 国際融合創造セ
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Ueda Kentaro
Department Of Cardiology Hiroshima City Asa Hospital
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Ueda K
Kyushu Univ. Fukuoka Jpn
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Fujita Shigeo
Department Of Applied Physics And Physico-informatics Keio University
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Ohta Kazuki
Department Of Clinical And Molecular Endocrinology Graduate School Tokyo Medical And Dental Universi
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Ohta Kazuki
Department Of Electronic Science And Engineering Kyoto University
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Ueda Kentaro
Department Of Electronic Science And Engineering Kyoto University
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Ueda Kenichi
Institute For Laser Science University Of Electro-communications
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Fujita Shigetaka
Department Of Electrical And Electronic Engineering Faculty Of Engineering Hachinohe Institute Of Te
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Sakamoto Takeshi
Department Of Orthopaedic Surgery Kyoto University Graduate School Of Medicine
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Fujita Shizuo
Department Of Electrical Engineering Kyoto University
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Sakamoto Takeshi
Department Of Chemistry And Biotechnology School Of Engineering The University Of Tokyo
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Sakamoto Takeshi
Department Of Electronic Science And Engineering Kyoto University
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Sakamoto Takeshi
Department of Biofunctional Science, Faculty of Agriculture and Life Science, Hirosaki University
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