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Non-linear electric field response of permittivity of atomically smooth TiO2(rutile) single crystals studied by an electrochemical approach

机译:用电化学方法研究原子光滑的TiO2(金红石)单晶介电常数的非线性电场响应

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Electric field-dependent permittivity of n -TiO2 (rutile) along different crystallographic axes was investigated by an electrochemical impedance spectroscopy (EIS) measurement. The C ?2 versus U plots were fitted with a quadratic function of U , derived from a model that adds the effects of electric field dependent permittivity to the conventional Mott–Schottky equation. Only when atomically flat n -TiO2 single crystal electrodes were used, could the intrinsic behavior of the electric field dependent permittivity be observed. The principal components of permittivity in the ab -plane exhibited a weak electric field dependence, while a strong electric field dependence was confirmed along the c -axis direction. By taking the electric field dependent permittivity into account, we were able to evaluate accurately the flat-band potential and the donor density. Different photocurrent behavior between (110), (100), and (001) electrodes is discussed in terms of the electric field strength at the surface and the depletion layer width within TiO2.
机译:通过电化学阻抗谱(EIS)测量研究了n -TiO 2 (金红石)沿不同晶轴的电场依赖性介电常数。 C ?2 与U的曲线拟合了U的二次函数,该函数是从将依赖于电场的介电常数的影响添加到常规Mott-Schottky方程的模型得出的。仅当使用原子平面的n -TiO 2 单晶电极时,才能观察到电场依赖性介电常数的内在行为。 ab平面中的介电常数的主要成分表现出弱的电场依赖性,而沿着c轴方向证实了强的电场依赖性。通过考虑与电场有关的介电常数,我们能够准确地评估平带电势和施主密度。根据表面电场强度和TiO 2 内的耗尽层宽度,讨论了(110),(100)和(001)电极之间的不同光电流行为。

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