Presentation 2013-06-21
Pattern Formation Using Photoreactive Spin-Coated Film and its Application to Device Fabrication
Hirosato KATO, Kuniaki TANAKA, Hiroaki USUI,
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Abstract(in English) A mixture of a vinyl monomer and a photoinitiator was spin-coated to obtain a photoreactive thin film of small molecules. The film was irradiated with UV light through a photomask to selectively polymerize the irradiated part, and then rinsed in an organic solvent to obtain a patterned polymer thin film. It was found that by using a bifunctional monomer and annealing the film after the patterning, the patterned film attains high resistivity to organic solvents. It was also possible to dope the pattern with a phosphorescent iridium complex. The film was applied to prepare an organic light emitting diode.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Photoreactive organic film / Photopolymerization / Patterning / Hole-transport polymer / OLED
Paper # EMD2013-9,CPM2013-24,OME2013-32
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Committee EMD
Conference Date 2013/6/14(1days)
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Registration To Electromechanical Devices (EMD)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Pattern Formation Using Photoreactive Spin-Coated Film and its Application to Device Fabrication
Sub Title (in English)
Keyword(1) Photoreactive organic film
Keyword(2) Photopolymerization
Keyword(3) Patterning
Keyword(4) Hole-transport polymer
Keyword(5) OLED
1st Author's Name Hirosato KATO
1st Author's Affiliation Tokyo University of Agriculture and Technology, Department of Polymer and Organic Materials Chemistry()
2nd Author's Name Kuniaki TANAKA
2nd Author's Affiliation Tokyo University of Agriculture and Technology, Department of Polymer and Organic Materials Chemistry
3rd Author's Name Hiroaki USUI
3rd Author's Affiliation Tokyo University of Agriculture and Technology, Department of Polymer and Organic Materials Chemistry
Date 2013-06-21
Paper # EMD2013-9,CPM2013-24,OME2013-32
Volume (vol) vol.113
Number (no) 96
Page pp.pp.-
#Pages 5
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