Description

Book Synopsis

This book explores why cobalt oxides have drawn interest as functional materials due to their peculiar physical properties partially originating from a rich variety of the valence and spin state of cobalt ions. The book starts with the basics of condensed matter physics and advances toward the strong electron correlation system stage. It also provides up-to-date information on topics, such as thermoelectric power, superconductivity, solid oxide fuel cells, and nanostructure effect.



Table of Contents

Introduction of Condensed Matter Physics. Spin-State Crossover. Li Ion Battery. Huge Thermoelectric Power. Room-Temperature Ferromagnetism. Partially Disordered Antiferromagnetic Transition. Superconductivity. Transport Properties Combined with Charge, Spin, and Orbital. Magnetoresistance and Spin Blockade. Intrinsic Inhomogeneity. Move/Diffuse and Charge/Discharge Effect.

Functional Cobalt Oxides: Fundamentals,

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A Hardback by Tsuyoshi Takami

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    View other formats and editions of Functional Cobalt Oxides: Fundamentals, by Tsuyoshi Takami

    Publisher: Pan Stanford Publishing Pte Ltd
    Publication Date: 04/08/2014
    ISBN13: 9789814463324, 978-9814463324
    ISBN10: 9814463329

    Description

    Book Synopsis

    This book explores why cobalt oxides have drawn interest as functional materials due to their peculiar physical properties partially originating from a rich variety of the valence and spin state of cobalt ions. The book starts with the basics of condensed matter physics and advances toward the strong electron correlation system stage. It also provides up-to-date information on topics, such as thermoelectric power, superconductivity, solid oxide fuel cells, and nanostructure effect.



    Table of Contents

    Introduction of Condensed Matter Physics. Spin-State Crossover. Li Ion Battery. Huge Thermoelectric Power. Room-Temperature Ferromagnetism. Partially Disordered Antiferromagnetic Transition. Superconductivity. Transport Properties Combined with Charge, Spin, and Orbital. Magnetoresistance and Spin Blockade. Intrinsic Inhomogeneity. Move/Diffuse and Charge/Discharge Effect.

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