Phase Transitions in Nanocomposites Obtained by Introducing KNO3 into the Pores of Nanosized Al2O3 Films

A. Milinskiy, S. Baryshnikov
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引用次数: 2

Abstract

Comparative studies of phase transitions in nanocomposites on the base of KNO3 and Al2O3 films with pores of 240 and 45 nm were carried out. The temperature dependences of the linear dielectric constant and the amplitude of the third harmonic were measured. The measurements were carried out in the heating and cooling regime in the range from room temperature to 463 K. Anomalies, corresponding to structural phase transitions, were observed. A considerable expansion of the temperature range of the potassium nitrate ferroelectric phase III was observed upon cooling, which increased with decreasing pore size of the Al2O3 films. The structural transition upon heating from phase II to phase I for nanocomposites with a pore size of 45 nm shifted relative to the transition in bulk KNO3 by 2 K toward high temperatures, whereas the temperature change for the sample in the Al2O3 film with pores of 240 nm did not occur.
在纳米Al2O3薄膜孔中引入KNO3可获得纳米复合材料的相变
对比研究了240 nm和45 nm孔大小为kno3和Al2O3的纳米复合材料的相变。测量了线性介电常数和三次谐波振幅与温度的关系。测量在从室温到463 K的加热和冷却条件下进行。观察到与结构相变相对应的异常。随着al2o3薄膜孔径的减小,硝酸钾铁电相的温度范围显著扩大。对于孔径为45 nm的纳米复合材料,从II相加热到I相的结构转变相对于KNO3块体向高温的转变偏移了2 K,而对于孔径为240 nm的Al2O3薄膜样品,则没有发生温度变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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