Presentation 2009-01-21
Binary complexed array of microspheres by using photoinduced deformation of azopolymer surface
Yasuhiko MURAKAMI, Yuji KATO, Masahiro TAWATA, Hiroshi SHIMOYAMA, Masahiro SHIOZAWA, Taiji IKAWA, Osamu WATANABE,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) We demonstrate a new method for fabricating binary complexed array structure by a variety of microspheres onto the film of an azobenzene-coating polymer. Two photo-responsive properties, i.e., photo-induced deformation of the film surface and photo-immobilization of the small objects on the film, of the azopolymer film are utilized to array method. First, we formed an intended template with a two-dimensional periodic pattern by exposing the interference pattern twice onto the film surface. Then colloidal particles were arranged in the separated square onto the template by gap-method. Next, we arranged different microspheres between separated array and photo-immobilized the microsphere onto the azopolymer surface by the irradiation of blue LEDs. After removing the surplus microsphere by ultrasonic cleaning, the single-layer binary complexed array structure consisting of two separated array were finally observed.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Azopolymer / Surface Relief Grating / Photo-Immobilizationmicrosheres / Microsphere / Binary Complexed Array
Paper # OME2008-92
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Conference Information
Committee OME
Conference Date 2009/1/14(1days)
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Paper Information
Registration To Organic Material Electronics (OME)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Binary complexed array of microspheres by using photoinduced deformation of azopolymer surface
Sub Title (in English)
Keyword(1) Azopolymer
Keyword(2) Surface Relief Grating
Keyword(3) Photo-Immobilizationmicrosheres
Keyword(4) Microsphere
Keyword(5) Binary Complexed Array
1st Author's Name Yasuhiko MURAKAMI
1st Author's Affiliation Meijo University()
2nd Author's Name Yuji KATO
2nd Author's Affiliation Meijo University
3rd Author's Name Masahiro TAWATA
3rd Author's Affiliation Meijo University
4th Author's Name Hiroshi SHIMOYAMA
4th Author's Affiliation Meijo University
5th Author's Name Masahiro SHIOZAWA
5th Author's Affiliation Toyota Central Research and Development Laboratories, Inc.
6th Author's Name Taiji IKAWA
6th Author's Affiliation Toyota Central Research and Development Laboratories, Inc.
7th Author's Name Osamu WATANABE
7th Author's Affiliation Toyota Central Research and Development Laboratories, Inc.
Date 2009-01-21
Paper # OME2008-92
Volume (vol) vol.108
Number (no) 387
Page pp.pp.-
#Pages 4
Date of Issue