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Ferro- and Antiferroelectricity [electronic resource] :Order/Disorder versus Displacive / edited by Naresh S. Dalal, Annette Bussmann-Holder.

by Dalal, Naresh S [editor.]; Bussmann-Holder, Annette [editor.]; SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Structure and Bonding: 124Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2007.Description: XIV, 220 p. Also available online. online resource.ISBN: 9783540496045.Other title: With contributions by numerous experts.Subject(s): Chemistry | Chemistry, inorganic | Optical materials | Chemistry | Inorganic Chemistry | Electrochemistry | Optical and Electronic MaterialsDDC classification: 546 Online resources: Click here to access online
Contents:
Order/Disorder Versus or with Displacive Dynamics in Ferroelectric Systems -- Experimental Evidence for the Coexistence of Order/Disorder and Displacive Behavior of Hydrogen-Bonded Ferroelectrics and Antiferroelectrics -- Order and Disorder in Perovskites and Relaxor Ferroelectrics -- Local Structure and Dynamics of Ferroelectric Solids -- Ferroelectricity of SrTiO3 Induced by Oxygen Isotope Exchange -- Evidence for Ferroelectric Nucleation Centres in the Pseudo-spin Glass System Rb1?x (ND4) x D2PO4: A 87Rb NMR Study -- Anharmonic and Quantum Effects in KDP-Type Ferroelectrics: Modified Strong Dipole–Proton Coupling Model -- A Comparison of Magnetic Random Access Memories (MRAMs) and Ferroelectric Random Access Memories (FRAMs).
In: Springer eBooks
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Order/Disorder Versus or with Displacive Dynamics in Ferroelectric Systems -- Experimental Evidence for the Coexistence of Order/Disorder and Displacive Behavior of Hydrogen-Bonded Ferroelectrics and Antiferroelectrics -- Order and Disorder in Perovskites and Relaxor Ferroelectrics -- Local Structure and Dynamics of Ferroelectric Solids -- Ferroelectricity of SrTiO3 Induced by Oxygen Isotope Exchange -- Evidence for Ferroelectric Nucleation Centres in the Pseudo-spin Glass System Rb1?x (ND4) x D2PO4: A 87Rb NMR Study -- Anharmonic and Quantum Effects in KDP-Type Ferroelectrics: Modified Strong Dipole–Proton Coupling Model -- A Comparison of Magnetic Random Access Memories (MRAMs) and Ferroelectric Random Access Memories (FRAMs).

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