From the structure of relaxors to the structure of MPB systems
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Elsevier
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http://woodhead.metapress.com/index/P119N03R94568418.pdf
Reference120 articles.
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2. Evidence for MB and MC phases in the morphotropic phase boundary region of (1 – x)[PbMg1/3Nb2/3O3]–xPbTiO3: A Rietveld study;Akhilesh;Phys. Rev. B,2003
3. Evolution of short-range to long-range monoclinic order of MB type with decreasing temperature in 0.75[PbMg1/3 Nb2/3O3]–0.25PbTiO3;Akhilesh;J. Appl. Phys,2006
4. Finite-temperature properties of pb(Zr1–x Tix)O3 alloys from first principles;Bellaiche;Phys. Rev. Lett,2000
5. Growth and correlation between composition and structure of (1–x)Pb(Zn1/3Nb2/3)O3–xPbTiO3 crystals near the morphotropic phase boundary;Bertram;J. Crystal Growth,2003
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1. Vapor Phase Growth of Metal‐Oxide Thin Films and Nanostructures;Tailored Functional Oxide Nanomaterials;2022-03-11
2. Electrocaloric Effect in Relaxor Ferroelectric-Based Materials;Electrocaloric Materials;2013-11-29
3. Poling and Depoling Effects on Dielectric Properties and Domain Structures in Relaxor 24Pb(In$_{1/2}$Nb$_{1/2}$)O$_{3}$–46Pb(Mg$_{1/3}$Nb$_{2/3}$)O$_{3}$–30PbTiO$_{3}$ near a Morphotropic Phase Boundary Composition;Japanese Journal of Applied Physics;2012-09-20
4. Domain structures and dielectric properties resulting from tweed precursors of relaxor ferroelectric solid-solution single-crystal 24Pb(In1/2Nb1/2)O3-46Pb (Mg1/3Nb2/3)O3-30PbTio3;IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control;2012-09
5. Enhancing permittivity of ferroelectric superlattices via composition tuning;Physical Review B;2010-04-19
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