MARC状态:审校 文献类型:西文图书 浏览次数:37
- 题名/责任者:
- Polymers for light-emitting devices and displays / edited by Inamuddin, Rajender Boddula, Mohd Imran Ahamed and Abdullah M. Asiri.
- 出版发行项:
- Hoboken, NJ : John Wiley & Sons, Inc., 2020.
- ISBN:
- 9781119654605
- 载体形态项:
- 263 pages ; 23 cm
- 附加个人名称:
- Inamuddin, 1980- editor.
- 附加个人名称:
- Boddula, Rajender, editor.
- 附加个人名称:
- Ahamed, Mohd Imran, editor.
- 附加个人名称:
- Asiri, Abdullah M., editor.
- 论题主题:
- Light emitting diodes-Materials.
- 论题主题:
- Liquid crystal devices-Materials.
- 论题主题:
- Electronic polymers.
- 中图法分类号:
- TN205
- 书目附注:
- Includes bibliographical references and index.
- 内容附注:
- Applications of polymer light-emitting devices and displays / D. Prakash Babu, S. Naresh Kumar, N. Suresh Kumar, K. Chandra Babu Naidu and D. Baba Basha -- Polymer light-emitting devices by solution processing / Mariya Aleksandrova -- DFT computational modeling and design of new cyclopentadithiophene (CPDT) derivatives for highly efficient blue emitters in OLEDs / Rania Zaier, Said Hajaji, Masatoshi Kozaki and Sahbi Ayachi
- 摘要附注:
- "Polymers for Light-Emitting Devices and Displays provides an in-depth overview of fabrication methods and unique properties of polymeric semiconductors, and their potential applications for LEDs including organic electronics, displays, and optoelectronics. Some of the chapter subjects include : The newest polymeric materials and processes beyond the classical structure of PLED ; Conjugated polymers and their application in the light-emitting diodes (OLEDs & PLEDs) as optoelectronic devices ; The novel work carried out on electrospun nanofibers used for LEDs ; The roles of diversified architectures, layers, components, and their structural modifications in determining efficiencies and parameters of PLEDs as high-performance devices ; Polymer liquid crystal devices (PLCs), their synthesis, and applications in various liquid crystal devices (LCs) and displays ; Reviews the state-of-art of materials and technologies to manufacture hybrid white light-emitting diodes based on inorganic light sources and organic wavelength converters"--
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