NMR investigation of mixed relaxors xPMN-(1-x)PSN

Measurement of super(93)Nb, super(45)Sc, super(207)Pb NMR spectra are performed for the first time in the solid solution of the ferroelectric relaxors xPMN-(1-x)PSN (0 less than or equal to x less than or equal to 1). The peculiar behavior of the observed quantities and parameters, e.g. disappearanc...

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Veröffentlicht in:Ferroelectrics 1997-01, Vol.199 (1-4), p.173-185
Hauptverfasser: Glinchuk, M D, Bykov, I P, Laguta, V V, Nokhrin, S N
Format: Artikel
Sprache:eng
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Zusammenfassung:Measurement of super(93)Nb, super(45)Sc, super(207)Pb NMR spectra are performed for the first time in the solid solution of the ferroelectric relaxors xPMN-(1-x)PSN (0 less than or equal to x less than or equal to 1). The peculiar behavior of the observed quantities and parameters, e.g. disappearance of dielectric dispersion for x approximately 0.5, was explained by NMR measurements for the first time. The analysis of super(45)Sc NMR spectra dependence on x has shown that for x greater than or equal to 0.5 the ordering of the regions containing Sc ions takes place. The dependence of the level of structural order on solid solution is obtained. The investigation and analysis of temperature dependence of super(93)Nb and super(45)Sc NMR line width of the end member of the considered solid solution PSN made it possible to obtain new information about ions shifts and dynamics. It was shown that at T < T sub(max) Nb and Sc ions are shifted from their equilibrium lattice site (T sub(max) is dielectric permittivity epsilon ' maximum position). These ions shifts contribute to the temperature dependence of lattice polarization P, meanwhile jump of P at T identical with T sub(max) is determined by Pb ions shifts. The Nb ions electric dipoles were shown to be static in PSN in NMR measurements scale (10 super(-7)s) contrary to essential Nb dipoles reorientation dynamic behavior in PMN. The peculiarities of NMR line form in the investigated materials gave evidence about distribution of Nb, Sc, Pb dipole moments directions as well as values at any constant temperature.
ISSN:0015-0193
DOI:10.1080/00150199708213438