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The demonstration of significant ferroelectricity in epitaxial Y-doped HfO2 film

机译:外延Y掺杂HfO2薄膜中明显铁电的论证

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摘要

Ferroelectricity and Curie temperature are demonstrated for epitaxial Y-doped HfO2 film grown on (110) yttrium oxide-stabilized zirconium oxide (YSZ) single crystal using Sn-doped In2O3 (ITO) as bottom electrodes. The XRD measurements for epitaxial film enabled us to investigate its detailed crystal structure including orientations of the film. The ferroelectricity was confirmed by electric displacement filed – electric filed hysteresis measurement, which revealed saturated polarization of 16 μC/cm2. Estimated spontaneous polarization based on the obtained saturation polarization and the crystal structure analysis was 45 μC/cm2. This value is the first experimental estimations of the spontaneous polarization and is in good agreement with the theoretical value from first principle calculation. Curie temperature was also estimated to be about 450 °C. This study strongly suggests that the HfO2-based materials are promising for various ferroelectric applications because of their comparable ferroelectric properties including polarization and Curie temperature to conventional ferroelectric materials together with the reported excellent scalability in thickness and compatibility with practical manufacturing processes.
机译:在掺锡的In2O3(ITO)作为底部电极的条件下,在(110)氧化钇稳定的氧化锆(YSZ)单晶上生长的外延Y掺杂HfO2薄膜证明了铁电和居里温度。外延膜的XRD测量使我们能够研究其详细的晶体结构,包括膜的取向。铁电通过电位移场-电滞后测量确定,其饱和极化为16μC/ cm 2 。根据获得的饱和极化和晶体结构分析,估计的自发极化为45μC/ cm 2 。该值是自发极化的第一个实验估计,与第一原理计算的理论值非常吻合。居里温度也估计为约450C。这项研究有力地表明,基于HfO2的材料因其与常规铁电材料相当的铁电特性(包括极化和居里温度)以及在厚度上具有出色的可扩展性以及与实际制造工艺的兼容性,因此有望在各种铁电应用中使用。

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