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Organic Semiconductors for Optoelectronics
Hiroyoshi Naito (Edited by)
9781119146100, Wiley
Hardback, published 19 August 2021
384 pages
24.4 x 17 x 2.7 cm, 0.765 kg
Comprehensive coverage of organic electronics, including fundamental theory, basic properties, characterization methods, device physics, and future trends Organic semiconductor materials have vast commercial potential for a wide range of applications, from self-emitting OLED displays and solid-state lighting to plastic electronics and organic solar cells. As research in organic optoelectronic devices continues to expand at an unprecedented rate, organic semiconductors are being applied to flexible displays, biosensors, and other cost-effective green devices in ways not possible with conventional inorganic semiconductors. Organic Semiconductors for Optoelectronics is an up-to-date review of the both the fundamental theory and latest research and development advances in organic semiconductors. Featuring contributions from an international team of experts, this comprehensive volume covers basic properties of organic semiconductors, characterization techniques, device physics, and future trends in organic device development. Detailed chapters provide key information on the device physics of organic field-effect transistors, organic light-emitting diodes, organic solar cells, organic photosensors, and more. This authoritative resource: An important new addition to the Wiley Series in Materials for Electronic & Optoelectronic Applications, Organic Semiconductors for Optoelectronics bridges the gap between advanced books and undergraduate textbooks on semiconductor physics and solid-state physics. It is essential reading for academic researchers, graduate students, and industry professionals involved in organic electronics, materials science, thin film devices, and optoelectronics research and development.
Preface – to be supplied by H.Naito 1 Electronic Structures of Organic Semiconductors Kazuyoshi Tanaka 2 Charge carrier transport Hiroyoshi Naito 3 Theory of Optical Properties of Organic Semiconductors Jai Singh, Monishka Rita Narayan and David Ompong 4 Light absorption and emission properties of organic semiconductors Takashi Kobayashi, Takashi Nagase, and Hiroyoshi Naito 5 Photoluminescence Spectroscopy Hiroyoshi Naito 6 Time-of-flight method for determining the drift mobility in organic semiconductors Masahiro Funahashi 7 Microwave and Terahertz Spectroscopy Akinori Saeki 8 Intrinsic and extrinsic transport in crystalline organic semiconductors: electron-spin-resonance study for characterization of localized states. A. S. Mishchenko 9 Second Harmonic Generation Spectroscopy Takaaki Manaka and Mitsumasa Iwamoto 10 Device Physics of organic field-effect transistors Hiroyuki Matsui 11 Spontaneous orientation polarization in organic light-emitting diodes and its influence on charge injection, accumulation, and degradation properties Yutaka Noguchi, Hisao Ishii, Lars Jäger, Tobias D. Schmidt, Wolfgang Brütting 12 Advanced molecular design for organic light emitting diode emitters based on horizontal molecular orientation and thermally activated delayed fluorescence Li Zhao, DaeHyeon Kim, Jean-Charles Ribierre, Takeshi Komino and Chihaya Adachi 13 Organic field effect transistors integrated circuits Mayumi Uno 14 Naphthobisthiadiazole-based semiconducting polymers for high-efficiency organic photovoltaics Itaru Osaka and Kazuo Takimiya 15 Plasmonics for light-emitting and photovoltaic devices Koichi Okamoto
Subject Areas: Mechanical engineering & materials [TG]
