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Electronic and optical properties of...
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Ellialtıoğlu, Şinasi,
Electronic and optical properties of D-band perovskites /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
549.5
書名/作者:
Electronic and optical properties of D-band perovskites // Thomas Wolfram, Şİnasİ Ellİaltioğlu.
其他題名:
Electronic & Optical Properties of d-Band Perovskites
作者:
Wolfram, Thomas,
其他作者:
Ellialtıoğlu, Şinasi,
面頁冊數:
1 online resource (xi, 315 pages) : : digital, PDF file(s).
附註:
Title from publisher's bibliographic system (viewed on 05 Oct 2015).
標題:
Perovskite - Electric properties.
標題:
Perovskite - Optical properties.
標題:
Solid state electronics - Materials.
標題:
Energy-band theory of solids.
標題:
Perovskite.
ISBN:
9780511541292 (ebook)
摘要、提要註:
The perovskite family of oxides includes a vast array of insulators, metals, and semiconductors. Current intense scientific interest stems from the large number of diverse phenomena exhibited by these materials including pseudo two-dimensional electronic energy bands, high temperature superconductivity, metal-insulator transitions, piezoelectricity, magnetism, photochromic, and catalytic activity. This book is the first text devoted to a comprehensive theory of the solid-state properties of these fascinating materials. The text includes complete descriptions of the important energy bands, photoemission, surface states, and the chapter on high-temperature superconductors explores the electronic states in typical copper-oxide materials. Theoretical results are compared to experiment and discussed throughout the book. With problem sets included, this is a unified, logical treatment of fundamental perovskite solid-state chemistry which will appeal to graduate students and researchers alike.
電子資源:
http://dx.doi.org/10.1017/CBO9780511541292
Electronic and optical properties of D-band perovskites /
Wolfram, Thomas,1936-
Electronic and optical properties of D-band perovskites /
Electronic & Optical Properties of d-Band PerovskitesThomas Wolfram, Şİnasİ Ellİaltioğlu. - 1 online resource (xi, 315 pages) :digital, PDF file(s).
Title from publisher's bibliographic system (viewed on 05 Oct 2015).
Introductory discussion of the perovskites --1.
The perovskite family of oxides includes a vast array of insulators, metals, and semiconductors. Current intense scientific interest stems from the large number of diverse phenomena exhibited by these materials including pseudo two-dimensional electronic energy bands, high temperature superconductivity, metal-insulator transitions, piezoelectricity, magnetism, photochromic, and catalytic activity. This book is the first text devoted to a comprehensive theory of the solid-state properties of these fascinating materials. The text includes complete descriptions of the important energy bands, photoemission, surface states, and the chapter on high-temperature superconductors explores the electronic states in typical copper-oxide materials. Theoretical results are compared to experiment and discussed throughout the book. With problem sets included, this is a unified, logical treatment of fundamental perovskite solid-state chemistry which will appeal to graduate students and researchers alike.
ISBN: 9780511541292 (ebook)Subjects--Topical Terms:
645664
Perovskite
--Electric properties.
LC Class. No.: QE391.P47 / W65 2006
Dewey Class. No.: 549.5
Electronic and optical properties of D-band perovskites /
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The perovskite family of oxides includes a vast array of insulators, metals, and semiconductors. Current intense scientific interest stems from the large number of diverse phenomena exhibited by these materials including pseudo two-dimensional electronic energy bands, high temperature superconductivity, metal-insulator transitions, piezoelectricity, magnetism, photochromic, and catalytic activity. This book is the first text devoted to a comprehensive theory of the solid-state properties of these fascinating materials. The text includes complete descriptions of the important energy bands, photoemission, surface states, and the chapter on high-temperature superconductors explores the electronic states in typical copper-oxide materials. Theoretical results are compared to experiment and discussed throughout the book. With problem sets included, this is a unified, logical treatment of fundamental perovskite solid-state chemistry which will appeal to graduate students and researchers alike.
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http://dx.doi.org/10.1017/CBO9780511541292
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