Antiferroelectricity in ZrO2 and Ferroelectricity in Zr, Al, La Doped HfO2 Nanoparticles

A. Apostolov, I. Apostolova, J. Wesselinowa
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引用次数: 0

Abstract

The dependence of the polarization P in Hf1-xZrxO2 nanoparticles on electric field, dopant concentration x, size and temperature are studied using the transverse Ising model and the Green’s function method. Pure ZrO2 shows at high electric fields an antiferroelectric behavior. Pure HfO2 is a linear dielectric in the monoclinic phase. With increasing ZrO2 content the of HZO shows a ferroelectric behavior. The composition dependence x of the remanent polarization Pr(x) has a maximum for x = 0.5. For x = 0, pure HfO2, and x = 1, pure ZrO2, Pr=0. P increases with decreasing HZO nanoparticle size. The influence of Al and La doping on Pr in HfO2 nanoparticles is also studied. The exhibiting of the ferroelectricity in ion doped HfO2 is due to a phase transformation and to an internal strain effect. The observed results are in good qualitative agreement with the experimental data.
ZrO2的反铁电性和Zr, Al, La掺杂HfO2纳米颗粒的铁电性
利用横向伊辛模型和格林函数方法研究了Hf1-xZrxO2纳米颗粒中极化P对电场、掺杂剂浓度x、尺寸和温度的依赖性。纯ZrO2在高电场下表现出反铁电行为。纯HfO2是单斜相中的线性电介质。随着ZrO2含量的增加,HZO呈现出铁电行为。剩余极化Pr(x)的成分依赖性x在x=0.5时具有最大值。对于x=0的纯HfO2和x=1的纯ZrO2,Pr=0。P随着HZO纳米颗粒尺寸的减小而增加。还研究了Al和La掺杂对HfO2纳米粒子中Pr的影响。在离子掺杂的HfO2中表现出铁电性是由于相变和内部应变效应。观测结果与实验数据在质量上有很好的一致性。
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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