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Frontiers of 4d- and 5d- transition metal oxides

Author: Gang Cao; Lance DeLong
Publisher: Singapore ; Hackensack, N. J. : World Scientific, [2013] ©2013
Edition/Format:   Book : EnglishView all editions and formats
Database:WorldCat
Summary:
"This book is aimed at advanced undergraduates, graduate students and other researchers who possess an introductory background in materials physics and/or chemistry, and an interest in the physical and chemical properties of novel materials, especially transition metal oxides. New materials often exhibit novel phenomena of great fundamental and technological importance. Contributing authors review the structural,  Read more...
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Document Type: Book
All Authors / Contributors: Gang Cao; Lance DeLong
ISBN: 9789814374859 9814374857
OCLC Number: 759913882
Description: viii, 319 pages : illustrations ; 24 cm
Contents: 1. Introduction / Gang Cao and Lance E. DeLong --
2. Spectroscopic studies of strong spin-orbit coupling in 4d and 5d transition metal oxides / Soon Jae Moon and Tae Won Noh --
3. X-ray scattering studies of 4d- and 5d-electron transition metal oxides / Ioannis Zegkinoglou and Bernhard Keimer --
4. Exploring the magnetostructural phases of the layered ruthenates with Raman scattering / S. L. Cooper --
5. Metal-Insulator Transitions in n = 1 Ruddlesden-Popper ruthenates / Rongying Jin --
6. The contradictory physical properties and extreme anisotropy of Ca₃Ru₂O₇ / G. Cao, L. E. DeLong and P. Schlottmann --
7. Surfaces of transition-metal compounds : the interplay between structure and functionality / Xiaobo He, Jing Teng, Von Braun Nascimento, R. G. Moore, Guorong Li, Chen Chen, Jiandi Zhang and E. W. Plummer --
8. Instability of the J eff = 1/2 insulating state in Sr₂IrO₄ and Sr₃Ir₂O₇ (n = 1 and 2) / G. Cao and L. E. DeLong.
Responsibility: Gang Cao, Lance DeLong.

Abstract:

Suitable for advanced undergraduates, graduate students and other researchers who possess an introductory background in materials physics and/or chemistry, this title provides the structural,  Read more...

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schema:description""This book is aimed at advanced undergraduates, graduate students and other researchers who possess an introductory background in materials physics and/or chemistry, and an interest in the physical and chemical properties of novel materials, especially transition metal oxides. New materials often exhibit novel phenomena of great fundamental and technological importance. Contributing authors review the structural, physical and chemical properties of notable 4d- and 5d-transition metal oxides discovered over the last 10 years. These materials exhibit extraordinary physical properties that differ significantly from those of the heavily studied 3d-transition metal oxides, mainly due to the relatively strong influence of the spin-orbit interaction and orbital order in 4d- and 5d materials. The immense growth in publications addressing the physical properties of these novel materials underlines the need to document recent advances and the current state of this field. This book includes overviews of the current experimental situation concerning these materials." --Publisher's description."@en
schema:description"1. Introduction / Gang Cao and Lance E. DeLong -- 2. Spectroscopic studies of strong spin-orbit coupling in 4d and 5d transition metal oxides / Soon Jae Moon and Tae Won Noh -- 3. X-ray scattering studies of 4d- and 5d-electron transition metal oxides / Ioannis Zegkinoglou and Bernhard Keimer -- 4. Exploring the magnetostructural phases of the layered ruthenates with Raman scattering / S. L. Cooper -- 5. Metal-Insulator Transitions in n = 1 Ruddlesden-Popper ruthenates / Rongying Jin -- 6. The contradictory physical properties and extreme anisotropy of Ca₃Ru₂O₇ / G. Cao, L. E. DeLong and P. Schlottmann -- 7. Surfaces of transition-metal compounds : the interplay between structure and functionality / Xiaobo He, Jing Teng, Von Braun Nascimento, R. G. Moore, Guorong Li, Chen Chen, Jiandi Zhang and E. W. Plummer -- 8. Instability of the J eff = 1/2 insulating state in Sr₂IrO₄ and Sr₃Ir₂O₇ (n = 1 and 2) / G. Cao and L. E. DeLong."@en
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