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Permissible domain walls in monoclinic M
AB
ferroelectric phases
Ido Biran,
Semën Gorfman
*
*
Corresponding author for this work
Department of Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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AB
ferroelectric phases'. Together they form a unique fingerprint.
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Keyphrases
Domain Walls
100%
Monoclinic
100%
Ferroelectric Phase
100%
Microstructure
44%
Strain Domain
22%
Miller Indices
22%
Law
11%
Crystalline Structure
11%
Functional Properties
11%
Analytical Expression
11%
Lattice Parameter
11%
Phase Boundary
11%
Parameter Change
11%
Lattice Mismatch
11%
Basis Vectors
11%
Perovskite Oxide
11%
Single Crystal X-ray Diffraction (SCXRD)
11%
Ferroelectric Materials
11%
Distortion Parameters
11%
Spontaneous Polarization
11%
Morphotropic Phase Boundary
11%
Bragg Peak
11%
Monoclinic Phase
11%
Electromechanical Coupling
11%
Monoclinic Distortion
11%
Ferroelectric Perovskite Oxide
11%
Dielectricity
11%
Free Lattice
11%
Engineering
Monoclinic
100%
Domain Wall
100%
Microstructure
44%
Miller Index
22%
Thin Films
11%
Ray Diffraction
11%
Bragg Cell
11%
Functional Property
11%
Lattice Mismatch
11%
Lattice Parameter
11%
Spontaneous Polarization
11%
Morphotropic Phase Boundary
11%
Phase Boundary
11%
Basis Vector
11%
Material Science
Ferroelectric Material
100%
Domain Wall
100%
Oxide Compound
22%
Lattice Constant
11%
Thin Films
11%
Crystal Structure
11%
Lattice Mismatch
11%
Single Crystal X-Ray Diffraction
11%
Electromechanical Coupling
11%