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000421067 1001_ $$0P:(DE-HGF)0$$aHinterstein, M.$$b0$$eCorresponding author
000421067 245__ $$aInfluence of microstructure on symmetry determination of piezoceramics
000421067 260__ $$a[S.l.]$$bWiley-Blackwell$$c2018
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000421067 520__ $$aThe origin of the complex reflection splitting in potassium sodium niobate doped with lithium and manganese was investigated using temperature-dependent high-resolution X-ray and neutron diffraction as well as electron probe microanalysis and scanning electron microscopy. Two structural models were developed from the diffraction data. A single-phase monoclinic Pm model is known from the literature and is able to reproduce the diffraction patterns perfectly. However, a model with phase coexistence of two classical orthorhombic Amm2 phases can also reproduce the diffraction data with equal accuracy. Scanning electron microscopy in combination with electron probe microanalysis revealed segregation of the A-site substituents potassium and sodium. This favours the model with phase coexistence and confirms the need for comprehensive analyses with complementary methods to cover a broad range of length scales as well as to assess both average and local structure.
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000421067 7001_ $$0P:(DE-H253)PIP1008013$$aMgbemere, H. E.$$b1
000421067 7001_ $$aHoelzel, M.$$b2
000421067 7001_ $$aRheinheimer, W.$$b3
000421067 7001_ $$00000-0002-5095-2419$$aAdabifiroozjaei, E.$$b4
000421067 7001_ $$aKoshy, P.$$b5
000421067 7001_ $$aSorrell, C. C.$$b6
000421067 7001_ $$aHoffman, M.$$b7
000421067 773__ $$0PERI:(DE-600)2020879-0$$a10.1107/S1600576718003916$$gVol. 51, no. 3, p. 670 - 678$$n3$$p670 - 678$$tJournal of applied crystallography$$v51$$x1600-5767$$y2018
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