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Advanced Organic Materials for Optoelectronic Integrated Devices, Interconnects, and Packaging

  • Sandalphon
  • E. Hendrickx
  • J. Herlocker
  • G. E. Jabbour
  • Y. Kawabe
  • B. Kippelen
  • M. M. Morrell
  • S. E. Shaheen
  • D. D. Steele
  • J. F. Wang
  • N. Peyghambarian

Abstract

Organic materials complement many commonly used inorganic materials in optical devices due to their improved linear and nonlinear optical properties. Research has progressed on several fronts, investigating the electrooptic, photorefractive, and light-emitting properties of organic materials, and their mechanical and chemical stability for commercial applications. We present some of our achievements which demonstrate the attractive performance of the organic materials, and show that practical optical devices using organic materials are closer to commercial development.

Keywords

Lower Unoccupied Molecular Orbital Injection Molding Diffraction Efficiency External Quantum Efficiency Holographic Data Storage 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Copyright information

© Springer Science+Business Media New York 1998

Authors and Affiliations

  • Sandalphon
    • 1
  • E. Hendrickx
    • 1
  • J. Herlocker
    • 1
  • G. E. Jabbour
    • 1
  • Y. Kawabe
    • 1
  • B. Kippelen
    • 1
  • M. M. Morrell
    • 1
  • S. E. Shaheen
    • 1
  • D. D. Steele
    • 1
  • J. F. Wang
    • 1
  • N. Peyghambarian
    • 1
  1. 1.Optical Sciences CenterUniversity of ArizonaTucsonUSA

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