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Work function and band alignment of ...
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Yoshitake, Michiko.
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Work function and band alignment of electrode materials = the art of interface potential for electronic devices, solar cells, and batteries /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Work function and band alignment of electrode materials/ by Michiko Yoshitake.
Reminder of title:
the art of interface potential for electronic devices, solar cells, and batteries /
Author:
Yoshitake, Michiko.
Published:
Tokyo :Springer Japan : : 2021.,
Description:
viii, 136 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction: Functions and Performances Governed by Work Fucntion -- What Is Work Function?: Definition and Determination of Factors of Work Function -- Modification of Work Function -- Measurement of Work Function -- Modification of Band Alignment via Work Function Control -- An Advanced Model for Practical Devices -- Utilizing Interface Potential -- Appendix.
Contained By:
Springer Nature eBook
Subject:
Electrons - Emission. -
Online resource:
https://doi.org/10.1007/978-4-431-56898-8
ISBN:
9784431568988
Work function and band alignment of electrode materials = the art of interface potential for electronic devices, solar cells, and batteries /
Yoshitake, Michiko.
Work function and band alignment of electrode materials
the art of interface potential for electronic devices, solar cells, and batteries /[electronic resource] :by Michiko Yoshitake. - Tokyo :Springer Japan :2021. - viii, 136 p. :ill., digital ;24 cm. - NIMS monographs,2197-8891. - NIMS monographs..
Introduction: Functions and Performances Governed by Work Fucntion -- What Is Work Function?: Definition and Determination of Factors of Work Function -- Modification of Work Function -- Measurement of Work Function -- Modification of Band Alignment via Work Function Control -- An Advanced Model for Practical Devices -- Utilizing Interface Potential -- Appendix.
This book covers a wide range of topics on work function and band alignment, from the basics to practical examples. Work function and band alignment determine electric properties at the interface including surfaces, such as electron emission, the Schottky barrier height, and ohmic contact. Basic physics is used to systematically explain how to adjust and measure work function and how to modify the band alignment required for controlling work function in functional materials and electrodes. Methods introduced in the book help to improve device performance and to solve the problems of controlling the voltage and efficiency of devices in a great variety of applications, including electronic devices, optical devices such as displays, and energy devices such as solar cells and batteries. Understanding the technical methods necessary for controlling work function and band alignment can help to solve problems such as non-ohmic contact at source-electrode or drain-electrode interfaces in metal-oxide-silicon structures, which directly contributes to improving power saving and reducing heat generation in computers.
ISBN: 9784431568988
Standard No.: 10.1007/978-4-431-56898-8doiSubjects--Topical Terms:
1073144
Electrons
--Emission.
LC Class. No.: QC793.5.E62
Dewey Class. No.: 537.5
Work function and band alignment of electrode materials = the art of interface potential for electronic devices, solar cells, and batteries /
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Introduction: Functions and Performances Governed by Work Fucntion -- What Is Work Function?: Definition and Determination of Factors of Work Function -- Modification of Work Function -- Measurement of Work Function -- Modification of Band Alignment via Work Function Control -- An Advanced Model for Practical Devices -- Utilizing Interface Potential -- Appendix.
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This book covers a wide range of topics on work function and band alignment, from the basics to practical examples. Work function and band alignment determine electric properties at the interface including surfaces, such as electron emission, the Schottky barrier height, and ohmic contact. Basic physics is used to systematically explain how to adjust and measure work function and how to modify the band alignment required for controlling work function in functional materials and electrodes. Methods introduced in the book help to improve device performance and to solve the problems of controlling the voltage and efficiency of devices in a great variety of applications, including electronic devices, optical devices such as displays, and energy devices such as solar cells and batteries. Understanding the technical methods necessary for controlling work function and band alignment can help to solve problems such as non-ohmic contact at source-electrode or drain-electrode interfaces in metal-oxide-silicon structures, which directly contributes to improving power saving and reducing heat generation in computers.
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Physics and Astronomy (SpringerNature-11651)
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W9398947
電子資源
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EB QC793.5.E62
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