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Localized to Itinerant Electronic Transition in Perovskite Oxides 1st edition by John Goodenough, Cooper, Egami, Goodenough, Zhou ISBN 3540675221 978-3540675228

  • SKU: BELL-2193858
Localized to Itinerant Electronic Transition in Perovskite Oxides 1st edition by John Goodenough, Cooper, Egami, Goodenough, Zhou ISBN 3540675221 978-3540675228
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Localized to Itinerant Electronic Transition in Perovskite Oxides 1st edition by John Goodenough, Cooper, Egami, Goodenough, Zhou ISBN 3540675221 978-3540675228 instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 5.96 MB
Pages: 249
Author: John B. Goodenough
ISBN: 3540675221
Language: English
Year: 2001
Edition: 1

Product desciption

Localized to Itinerant Electronic Transition in Perovskite Oxides 1st edition by John Goodenough, Cooper, Egami, Goodenough, Zhou ISBN 3540675221 978-3540675228 by John B. Goodenough 3540675221 instant download after payment.

Localized to Itinerant Electronic Transition in Perovskite Oxides 1st edition by John Goodenough, Cooper, Egami, Goodenough, Zhou - Ebook PDF Instant Download/Delivery:  3540675221 , 978-3540675228
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ISBN 10: 3540675221
ISBN 13: 978-3540675228
Author: John Goodenough, Cooper, Egami, Goodenough, Zhou

Interest in the transition metal oxides with perovskite related structures goes back to the 1950s when the sodium tungsten bronzes NaxWO3 were shown to be metallic [1 ], the system Lal_xSr~MnO3 was found to contain a ferromagnetic conductive phase [2], and La0.sSr0.sCoO3 was reported to be a ferromagnetic metal, but with a peculiar magnetization of 1.5 #a/Co atom [3]. Stoichiometric oxide perovskites have the generic formula AMO3 in which the A site is at the center of a simple cubic array of M sites; the oxide ions form (180 ° 4)) M O M bridges to give an MO3 array of corner shared MO6/2 octahedra and the larger A cations have twelvefold oxygen coordination. Mismatch between the A O and M O equilibrium bond lengths introduces internal stresses. A compressive stress on the MO3 array is accommodated by a lowering of the M O M bond angle from 180 ° to (180 ° 4)); a tensile stress on the M O M bonds is accommodated by the formation of hexagonal polytypes [4].


Localized to Itinerant Electronic Transition in Perovskite Oxides 1st Table of contents:

Chapter1 : Introduction

Chapter 2: Content

Chapter 3: Conclusion 

Chapter 4: Appendices

Chapter 5: Glossary

Chapter 6: References 

Chapter 7: Index


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Tags: John Goodenough, Cooper, Egami, Goodenough, Zhou, Itinerant Electronic, Perovskite Oxides

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