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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Effect of barium titanate admixture on the stability of potassium nitrate ferroelectric phase in (1 – x)KNO3 + (x)BaTiO3 composites
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Effect of barium titanate admixture on the stability of potassium nitrate ferroelectric phase in (1 – x)KNO3 + (x)BaTiO3 composites

机译:钛酸钡混合物对(1 - X)KNO3 +(X)BATIO3复合材料硝酸钾铁电相稳定性的影响

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The study of temperature evolution of KNO3 structure in ferroelectric (1–x)KNO3 + (x)BaTiO3 composites at х = 0.25 and 0.50 has been carried out on cooling and on heating using X-ray diffraction. It was shown that on cooling the phase transition temperature (Tc) from the high-temperature paraelectric phase into the ferroelectric one did not depend on barium titanate concentration and coincided practically with Tc for the pure KNO3. Simultaneously the admixture of BaTiO3 enlarged essentially the temperature interval of the KNO3 ferroelectric phase stability in these composites. The structure refinement did not confirm the suppression of the ferroelectric phase of potassium nitrate proposed formerly for (0.5)KNO3 + (0.5)BaTiO3 sample on a basis of dielectric spectroscopy data. The transition from the ferroelectric phase into the lowtemperature paraelectric α-phase was not observed in this composite on cooling down to 348 K.
机译:在= 0.25和0.50的铁电(1-x)KNO3 +(X)BATIO3复合材料中的KNO3结构温度演化研究已经在冷却和使用X射线衍射进行加热。结果表明,在将高温对电相的冷却温度(Tc)冷却到铁电中,不依赖于钛酸钡浓度并与纯KNO3的Tc几乎吻合。同时,BATIO3的混合物基本上扩大了这些复合材料中KNO3铁电相稳定性的温度间隔。结构细化在基于介电光谱数据的基础上,不确定以前用于(0.5)KNO3 +(0.5)BATIO3样品的硝酸钾的铁电相。在冷却至348k的情况下,在该复合材料中未观察到从铁电相转变为低温乙氧电α-阶段。

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