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the study of structure and transitional phases in b0.95bi0.05ti1-xfexo3 ceramics synthesized by solid state route
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نویسنده
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gouitaa najwa ,taj-dine lamcharfi ,lamfaddal bouayad ,farid abdi ,ounacer mohamed ,sajieddine mohammed
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منبع
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iranian journal of materials science and engineering - 2021 - دوره : 18 - شماره : 2 - صفحه:31 -39
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چکیده
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The structural and dielectric properties of iron and bismuth co-substituted batio3 ceramic with theformula: ba0.95bi0.05ti1-xfexo3 for x=0.00 to 1.00, synthesized by solid state route, were characterized. the x-raydiffraction results showed a tetragonal phase for x=0.00. while for x=0.40 to 0.80 we observed a coexistence oftetragonal, hexagonal and pseudo-cubic phases. at x= 1.00 only the pseudo-cubic phase is present and the otherphase disappeared. the raman results indicated the existence of tetragonal band for x≤0.40, and an appearance ofcharacteristic bands of fe3+ ions for fe content of higher than 0.4. the sem micrographs showed an increase ingrain size with the increase of fe content and it reached a maximum at x=0.40. the mossbauer spectroscopyindicated that the samples are paramagnetic at room temperature and that the fe is oxidized under fe3+ with noexistence of fe2+ or fe4+ ions. the temperature dependence of dielectric permittivity was investigated in thefrequency range from 20 hz to 2 mhz. the results showed three dielectric relaxation phase transitions from arhombohedral ferroelectric to orthorhombic ferroelectric (tr-o) then to a tetragonal ferroelectric phase (at to-t),and finally to cubic paraelectric at the curie temperature (tc). in addition, the temperature of phase transitionshifted to the lower temperature with the increase of fe content for all the phase transitions. and the maximum ofdielectric permittivity increased for tr-o while for tt-o and tm phases transitions, it reached a maximum at x=0.60and x=0.80 respectively and then decreased.
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کلیدواژه
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structural ,dielectric ,batio3 ,solid state ,sem ,mossbauer ,paramagnetic ,phase transition ,curie temperature.
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آدرس
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university sidi mohamed ben abdellah usmba, systems and components laboratory (lssc), electrical engineering department, morocco, university sidi mohamed ben abdellah usmba, systems and components laboratory (lssc), electrical engineering department, morocco, university sidi mohamed ben abdellah usmba, systems and components laboratory (lssc), electrical engineering department, morocco, university sidi mohamed ben abdellah usmba, systems and components laboratory (lssc), electrical engineering department, morocco, university sultan moulay slimane, fst, physic of materials laboratory, morocco, university sultan moulay slimane, fst, physic of materials laboratory, morocco
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Authors
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