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Microstructure and electric properties of lead lanthanum titanate thin film under transverse electric fields

机译:钛酸镧镧薄膜在横向电场下的微观结构和电学性能

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摘要

Polycrystalline lead lanthanum titanate thin film having perovskite structure was fabricated by metalorganic deposition (MOD) on a ZrO₂/SiO₂/Si substrate at 600°C for 1 h in O₂ atmosphere. Columnar structured ZrO₂ buffer layer was also prepared by a MOD process under the same condition. Electrical measurements were conducted on interdigitated electrodes. The crystalline structure and growth behavior of the films have been studied by x-ray diffraction and scanning electron microscopy. It is observed that dielectric response of the film is effected by the cable length used in the measurement and by the values of the ac voltage. Long cable gives rise to an additional resonance peak at high frequency caused by the stray inductance of the contacts and cables. The capacitance and loss tangent over low frequency range shows significant variations due to the trapped charges and space charges in the film. These variations are very dependent on the values of the ac voltage and the length of cable. Meanwhile, the trapped charges and space charges lead to abnormal P-E loops, in which the measured remanent polarization and coercive field increase with increasing frequency.
机译:具有钙钛矿结构的多晶钛酸铅镧薄膜是通过在O2气氛中于600℃在ZrO 2 / SiO 2 / Si衬底上金属有机沉积(MOD)1小时而制得的。柱状结构的ZrO 2缓冲层也通过MOD工艺在相同条件下制备。在叉指电极上进行电测量。通过X射线衍射和扫描电子显微镜研究了薄膜的晶体结构和生长行为。可以看出,薄膜的介电响应受测量中使用的电缆长度和交流电压值的影响。长电缆会由于触点和电缆的杂散电感而在高频处引起额外的谐振峰值。低频范围内的电容和损耗角正切值会由于薄膜中的俘获电荷和空间电荷而发生明显变化。这些变化非常取决于交流电压值和电缆长度。同时,捕获的电荷和空间电荷会导致异常的P-E回路,其中测得的剩余极化和矫顽场会随着频率的增加而增加。

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