Introduction to Organic Electronic and Optoelectronic Materials and Devices

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ISBN 9780849392849
Cat# 9284
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ISBN 9781439890776
Cat# KE14732
 

Features

  • Presents fundamentals, principle mechanisms, representative examples, and key data
  • Covers the material in a format easily accessible for students or nonexperts
  • Provides comprehensive, broad coverage that includes nearly every key subject in this field
  • Highlights emerging organic and polymeric optoelectronic materials
  • Contains combined coverage of organic electronic and optoelectronic materials and devices
  • Includes end-of-chapter exercises
  • Provides illustrations and a solutions manual via download
  • Summary

    Reflecting rapid growth in research and development on organic/polymeric electronic and photonic materials and devices, Introduction to Organic Electronic and Optoelectronic Materials and Devices provides comprehensive coverage of the state-of-the-art in an accessible format. The book presents fundamentals, principles, and mechanisms complemented by examples, experimental data, and more than 600 figures, more than 500 equations, about 70 tables, more than 150 exercise questions, and more than 1500 reference citations.

    Table of Contents

    Introduction to Optoelectronic Materials, N. Peyghambarian and M. Fallahi
    Introduction to Optoelectronic Device Principles, J. Piprek
    Basic Electronic Structures and Charge Carrier Generation in Organic Optoelectronic Materials, S.-S. Sun
    Charge Transport in Conducting Polymers, V.N. Prigodin and A.J. Epstein
    Major Classes of Organic Small Molecules for Electronic and Optoelectronics, X. Meng, W. Zhu, and H. Tian
    Major Classes of Conjugated Polymers and Synthetic Strategies, Y. Li and J. Hou
    Low Energy Gap, Conducting, and Transparent Polymers, A. Kumar, Y. Ner, and G.A. Sotzing
    Conjugated Polymers, Fullerene C60, and Carbon Nanotubes for Optoelectronic Devices, L. Qu, L. Dai, and S.-S. Sun
    Introduction of Organic Superconducting Materials, H. Mori
    Molecular Semiconductors for Organic Field-Effect Transistors, A. Facchetti
    Polymer Field-Effect Transistors, H.G.O. Sandberg
    Organic Molecular Light-Emitting Materials and Devices, F. So and J. Shi
    Polymer Light-Emitting Diodes: Devices and Materials, X. Gong and S. Wang
    Organic and Polymeric Photovoltaic Materials and Devices, S.-S. Sun and C. Zhang
    Organic Molecular Nonlinear Optical Materials and Devices, M. Jazbinsek and P. Günter
    Polymeric Second-Order Nonlinear Optical Materials and Devices, S.-H. Jang and A.K.-Y. Jen
    Organic and Polymeric 3rd-Order Nonlinear Optical Materials and Device Applications, J.M. Hales and J.W. Perry
    Organic Multiphoton Absorbing Materials and Devices, K.D. Belfield, S. Yao, and M.V. Bondar
    Organic and Polymeric Photorefractive Materials and Devices, O. Ostroverkhova
    Organic/Metal Interface Properties, Y. Gao
    Single-Molecule Organic Electronics and Optoelectronics, L. Zang, X. Yang, and T. Naddo
    Introduction to Nonvolatile Organic Thin-Film Memory Devices, Y. Yang
    Introduction to Organic Electrochromic Materials and Devices, P. Chandrasekhar
    An Introduction to Conducting Polymer Actuators, G.M. Spinks, P.G. Whitten, G.G. Wallace, and V.-T. Truong
    Organic Liquid Crystal Optoelectronic Materials and Devices, S. Gauza
    Organic and Polymeric Photonic Band Gap (PBG) Materials and Devices, S. Meng and T. Kyu
    Introduction to Polymer Photonics for Information Technology, A. Chen
    Organic Low-Dielectric Constant Materials for Microelectronics, J. Chen
    Self-Assembly of Organic Optoelectronic Materials and Devices, J.R. Heflin
    Index

    Downloads Updates


    Resource OS Platform Updated Description Instructions
    9284.zip Platform type September 03, 2008

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