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首页> 外文期刊>表面科学 >チタン陽極酸化膜/導電性ポリマー接合の界面電気物性
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チタン陽極酸化膜/導電性ポリマー接合の界面電気物性

机译:的钛阳极氧化/导电聚合物界面结亲电

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摘要

Poly (3-methylthiophene) (P 3 MeT) films were electrochemically deposited on titanium oxide (TiO_x) layers prepared by anodic oxidation of titanium plates, and the chemical and electronic interaction at the P 3 MeT/TiO_x p-n heterojunction interfaces were investigated by current-voltage and capacitance-voltage measurements. The junction properties (diode factor, rectifying ratio, barrier height and built-in potential) of the cells were spontaneously improved during their storage in the air, and the extent of the improvement was higher when the TiO_x was prepared at a lower one (5 V) than in the case of a higher oxidation bias (20 V). These experimental findings were well explained by using a junction formation model described as the evolution of covalent bond formation at the interface, in which chemically active species on the TiO_x surface are linked to the P 3 MeT and increase in number with decreasing the anodic oxidation potential. This model was experimentally supported by the contact potential difference measurements of the TiO_x films.
机译:通过阳极氧化钛板制备的氧化钛(TiO_x)层上电化学沉积聚(3-甲基噻吩)(P 3 Met)膜,并通过电流研究了P 3 Met / TiO_X PN异质结接口的化学和电子相互作用 - 电压和电容 - 电压测量。在其在空气中的储存期间,细胞的电池的结性(二极管因子,整流比,屏障高度和内置电位)自发地改善,并且当在较低的TiO_x时,改善的程度越大(5 v)比在更高的氧化偏差(20V)的情况下。通过使用作为界面中的共价键形成的进化的结模型进行了很好的解释了这些实验结果,其中TiO_x表面上的化学活性物质与P 3相连并随着阳极氧化潜力的降低而增加数量。通过TiO_X薄膜的接触电位差测量实验支持该模型。

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