掺杂钇(Y)的 LaTiO3 的电学特性

Nondon Lal Dey, Shuvasish Chowdhury, Islam Uddin Shipu, Muhammad Ihsan Ibn Rahim, Debangshu Deb, Md Rafid Hasan
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引用次数: 0

摘要

在过去的 50 年中,包晶结构在科学的许多方面都显示出巨大的用途。从高温超导体到压电传感器,透辉石结构被广泛应用于固体物理和材料科学的前沿领域。LaTiO3 具有包晶型晶体结构。它经历了三次相变。在 50-100 K 时,LaTiO3 会发生磁性相变。约翰-泰勒相变发生在 100 K 到 300 K 之间,绝缘体-金属(I-M)相变发生在 500-550 K 之间。另一方面,YtiO3 也具有包晶型晶体结构。我们有兴趣了解用 Y(钇)取代 La 对电气和介电性质的影响。为了研究 La1-xYxTiO3 [x = 0.0、0.2、0.3 0.4 和 0.6] 体系的电学和介电性能,我们采用固态反应法制备了样品。为了确认晶体结构,进行了室温 X 射线衍射,没有观察到额外的包。频率相关介电常数的测量结果表明,介电常数随频率的增加而降低,介电常数值随钇(Y)浓度的增加而增加。我们还观察到,损耗正切随频率增加而减小,钇浓度增加导致损耗正切值减小。科尔-科尔图显示,晶粒尺寸随钇(钇)浓度的增加而减小,因此电阻率随钇(钇)浓度的增加而减小,而电导率随钇(钇)浓度的增加而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical properties of Yttrium(Y) doped LaTiO3
The perovskite structure has shown enormous utility in many facets of science in the past 50 years. From applications in high-temperature superconductors to piezoelectric sensors, the perovskite structure has been used in a wide array of cutting-edge areas of solid-state physics and materials science. LaTiO3 has a perovskite type crystal structure. It undergoes three phase transitions. At 50-100 K LaTiO3 undergoes a magnetic phase transition. John –Teller phase transition occurs between 100 K and 300 K. Also, insulator-metal (I-M) transition occurred at 500-550k. On the other hand, YtiO3 also have perovskite type crystal structure. It undergoes I-M phase transition around 750 K. We are interested to know the effect of the electrical and dielectric properties by replacing La with Y (Yttrium). To investigate the electrical and dielectric properties of La1-xYxTiO3 [x = 0.0, 0.2, 0.3 0.4 and 0.6] system, samples have been prepared by solid state reaction method. To confirm the crystal structure, room temperature X-ray diffractions were performed and no extra pack was observed. The measurement of frequency dependence dielectric constant shows that the decreases in dielectric constant observed with increase in frequency and the value of dielectric constant increase with increasing concentration of Y (Yttrium). We also observed that loss tangent decrease with increasing frequency and increase in concentration of Y (Yttrium) results to decrease in the value of loss tangent. The cole-cole plot shows that the grain size decrease with increasing concentration of Y (Yttrium), as a result resistivity decrease while conductivity increases with increasing concentration of Y (Yttrium).
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