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  4. Nonlinear optical side-chain polymer with high thermal stability and its pyroelectric thermal analysis
 
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1993
Journal Article
Title

Nonlinear optical side-chain polymer with high thermal stability and its pyroelectric thermal analysis

Abstract
Stable polymers with nonlinear optical side groups were synthesized from maleic anhydride copolymers and the azo dye Disperse Red 1 via esterification. After electrode poling under 135 V/ mu m at 185 degrees C, thermal stabilities were measured by pyroelectric and electro-optic thermal analysis and compared to a guest/host polymer of polymethylmethacrylate and the same dye. The pyroelectrically detected dipole orientation and the electro-optic activity of the side-chain polymers decreased only above 150 degrees C, and electro-optic r33 coefficients of up to 6 pm/V were achieved at 780 nm even without optimizing the dye content.
Author(s)
Bauer, S.
Ren, W.
Yilmaz, S.
Wirges, W.
Molzow, W.-D.
Gerhard-Multhaupt, R.
Oertel, U.
Hanel, B.
Haussler, L.
Komber, H.
Lunkwitz, K.
Journal
Applied Physics Letters  
DOI
10.1063/1.110630
Language
English
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Keyword(s)
  • electro-optical effects

  • nonlinear optics

  • optical polymers

  • pyroelectricity

  • thermal analysis

  • synthesis

  • side-chain polymer

  • thermal stability

  • pyroelectric thermal analysis

  • nonlinear optical side groups

  • maleic anhydride copolymers

  • azo dye

  • disperse red 1

  • esterification

  • electrode poling

  • electro-optic thermal analysis

  • guest/host polymer

  • dipole orientation

  • 185 degc

  • 150 degc

  • 780 nm

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