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Bismayer, U., Mathes, D., Bosbach, D., Putnis, A., van Tendeloo, G., Novak, J., Salje, E. K. H. (2000) Ferroelastic orientation states and domain walls in lead phosphate type crystals. Mineralogical Magazine, 64 (2) 233-239 doi:10.1180/002646100549328

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Reference TypeJournal (article/letter/editorial)
TitleFerroelastic orientation states and domain walls in lead phosphate type crystals
JournalMineralogical Magazine
AuthorsBismayer, U.Author
Mathes, D.Author
Bosbach, D.Author
Putnis, A.Author
van Tendeloo, G.Author
Novak, J.Author
Salje, E. K. H.Author
Year2000 (April)Volume64
Issue2
PublisherMineralogical Society
DOIdoi:10.1180/002646100549328Search in ResearchGate
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Mindat Ref. ID243164Long-form Identifiermindat:1:5:243164:6
GUID0
Full ReferenceBismayer, U., Mathes, D., Bosbach, D., Putnis, A., van Tendeloo, G., Novak, J., Salje, E. K. H. (2000) Ferroelastic orientation states and domain walls in lead phosphate type crystals. Mineralogical Magazine, 64 (2) 233-239 doi:10.1180/002646100549328
Plain TextBismayer, U., Mathes, D., Bosbach, D., Putnis, A., van Tendeloo, G., Novak, J., Salje, E. K. H. (2000) Ferroelastic orientation states and domain walls in lead phosphate type crystals. Mineralogical Magazine, 64 (2) 233-239 doi:10.1180/002646100549328
Abstract/NotesAbstractThe monoclinic structural distortion in lead phosphate and lead arsenate is correlated with the ferroelastic phase transition R3̄m → C2/c and R3̄m → P21/c respectively. The resulting domain patterns in the mixed compounds depend on their chemical composition. The intersection of ferroelastic W domain walls with the (100) surface of lead phosphate-arsenate mixed crystals has been imaged using tapping mode atomic force microscopy. Dilution of the strain leads to characteristic surface deformations which deviate from those in pure lead phosphate. In high twinned lead phosphate-arsenate, X-ray diffraction (XRD) was used to show renormalization effects and scattering phenomena stemming from the twin walls. The wall trajectory was found to be independent of chemical variations using transmission electron microscopy.


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