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Growth conditions effects on morphology and transport properties of pentacene thin films

机译:生长条件对并五苯薄膜的形态和传输性能的影响

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Pentacene thin films were prepared by vacuum evaporation on SiO_2/Si (100) and glass substrates with various growth conditions. X-ray diffraction, atomic force microscopy, and electrical conductivity measurements were employed to characterize the various properties of the films. Two distinct crystalline phases were observed with the 001 spacing of 15.0 A (thin film phase) and 14.0 A (single crystal phase), respectively. The single crystal phase appeared over a critical thickness of the thin film phase, and the critical thickness was strongly dependent on growth conditions: increasing the substrate temperature decreased the critical thickness. The substrate temperature enhanced the electrical conductivity of the films parallel to the substrate surface, although the substrate temperature induces the single crystal phase. On the other hand, gaps generated between grains degraded conductivity at a too high substrate temperature. The maximum conductivity of 2.0 * 10~(-7) S/cm was gained at a substrate temperature of 40 ℃.
机译:通过在具有各种生长条件的SiO_2 / Si(100)和玻璃基板上真空蒸发制备并五苯薄膜。使用X射线衍射,原子力显微镜和电导率测量来表征薄膜的各种特性。观察到两个不同的结晶相,其001间距分别为15.0 A(薄膜相)和14.0 A(单晶相)。单晶相出现在薄膜相的临界厚度上,并且临界厚度强烈取决于生长条件:增加衬底温度会降低临界厚度。尽管衬底温度诱导单晶相,但是衬底温度提高了平行于衬底表面的膜的电导率。另一方面,在太高的基板温度下,晶粒之间产生的间隙降低了导电性。在40℃的衬底温度下获得的最大电导率为2.0 * 10〜(-7)S / cm。

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