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Multinary Alloys Based on III-V Semiconductors

List Price: $67.99
SKU:
9780367780630
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25 unit(s)
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  • Product Details

    Author:
    Vasyl Tomashyk
    Format:
    Paperback
    Pages:
    294
    Publisher:
    CRC Press (March 31, 2021)
    Language:
    English
    ISBN-13:
    9780367780630
    Weight:
    18.25oz
    Dimensions:
    7" x 10"
    File:
    TAYLORFRANCIS-TayFran_260406043133783-20260406.xml
    Folder:
    TAYLORFRANCIS
    List Price:
    $67.99
    Case Pack:
    14
    As low as:
    $64.59
    Publisher Identifier:
    P-CRC
    Discount Code:
    H
    Country of Origin:
    United States
    Pub Discount:
    30
    Imprint:
    CRC Press
  • Overview

    III-V semiconductors have attracted considerable attention due to their applications in the fabrication of electronic and optoelectronic devices as light emitting diodes and solar cells. The electrical properties of these semiconductors can also be tuned by adding impurity atoms. Because of their wide application in various devices, the search for new semiconductor materials and the improvement of existing materials is an important field of study. This book covers all known information about phase relations in multinary systems based on III-V semiconductors, providing the first systematic account of phase equilibria in multinary systems based on III-V semiconductors and making research originally published in Russian accessible to the wider scientific community.



    This book will be of interest to undergraduate and graduate students studying materials science, solid state chemistry, and engineering. It will also be relevant for researchers at industrial and national laboratories, in addition to phase diagram researchers, inorganic chemists, and solid state physicists.



    Features:





    • Provides up-to-date experimental and theoretical information


    • Allows readers to synthesize semiconducting materials with predetermined properties


    • Delivers a critical evaluation of many industrially important systems presented in the form of two-dimensional sections for the condensed phases