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Thin-Film Organic Photonics: Molecular Layer Deposition and Applications: Optics and Photonics

Autor Tetsuzo Yoshimura
en Limba Engleză Hardback – 2 mar 2011
Among the many atomic/molecular assembling techniques used to develop artificial materials, molecular layer deposition (MLD) continues to receive special attention as the next-generation growth technique for organic thin-film materials used in photonics and electronics.
Thin-Film Organic Photonics: Molecular Layer Deposition and Applications describes how photonic/electronic properties of thin films can be improved through MLD, which enables precise control of atomic and molecular arrangements to construct a wire network that achieves "three-dimensional growth". MLD facilitates dot-by-dot—or molecule-by-molecule—growth of polymer and molecular wires, and that enhanced level of control creates numerous application possibilities.
Explores the wide range of MLD applications in solar energy and optics, as well as proposed uses in biomedical photonics
This book addresses the prospects for artificial materials with atomic/molecular-level tailored structures, especially those featuring MLD and conjugated polymers with multiple quantum dots (MQDs), or polymer MQDs. In particular, the author focuses on the application of artificial organic thin films to:
  • Photonics/electronics, particularly in optical interconnects used in computers
    Optical switching and solar energy conversion systems
  • Bio/ medical photonics, such as photodynamic therapy
  • Organic photonic materials, devices, and integration processes
With its clear and concise presentation, this book demonstrates exactly how MLD enables electron wavefunction control, thereby improving material performance and generating new photonic/electronic phenomena.
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Specificații

ISBN-13: 9781439819739
ISBN-10: 1439819734
Pagini: 370
Ilustrații: 368 b/w images, 17 tables and 104 Equations
Dimensiuni: 156 x 234 x 25 mm
Greutate: 0.7 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Optics and Photonics


Public țintă

Material scientists; optical, electrical, and system engineers.

Cuprins

Atomic/Molecular Assembling Technologies. Fundamentals of Molecular Layer Deposition (MLD). Fabrication of Multiple Quantum Dots (MQDs) by MLD. Theoretical Predictions of Electro-Optic (EO) Effecs in Polymer Wires. Design of Integrated Optical Switches. Organic Photonic Materials, Devices and Integration Processes. Applications to Optical Interconnects and Optical Switching Systems. Applications to Solar Energy Conversion Systems. Proposed Applications to Bio/Medical Photonics.

Recenzii

… deals with interesting topics about a new technique for highly-ordered structures and high-performance optoelectronic properties of organic molecules... . 
     -- Atsushi Kubono, Shizuoka University

... well-written with lucid and elaborate presentation of molecular layer deposition technique, systematic procedures of device fabrication and their useful applications. This is clearly a handy and helpful book to the researchers who are into organic photonics and related other applied fields and also useful for those just starting in the field.
—G. Vijaya Prakash

… deals with interesting topics about a new technique for highly-ordered structures and high-performance optoelectronic properties of organic molecules... . 
—Atsushi Kubono, Shizuoka University

Descriere

This book is an invaluable resource for material scientists working to develop artificial materials that can be structurally tailored at the atomic/molecular-level. This capability will enable electron-wave function control, which would improve material performance and generate new photonic/electronic phenomena. Exploring the prospect of structural modification in artificial materials, field pioneer Yoshimura describes how we can enhance the photonic/electronic properties of thin films using such precise manipulation of atomic and molecular arrangement. He also addresses related topics and concepts, such as a self-organized lightwave networks and heterogeneous integration processes. In addition, this important resource assesses applications in computers, optical switching systems, solar energy conversion systems, and bio/medical-photonics.