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Structural and electrical properties of polymorphic pentacene thin films

机译:多态性五烯薄膜的结构和电性能

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Due to its outstanding carrier transport capabilities the aromatic hydrocarbon pentacene is still one of the most promising out of all organic semiconducting materials investigated so far. Pentacene appears in several polymorphic structures that significantly differ with respect to the d(001) spacing. It is shown, that precise control of the epitaxial growth process of thin films enables not only to adjust the formation of the polymorphic phases, but also to influence grain size and shape. The relative volume fraction of the pentacene polymorphs is determined by several parameters which are substrate material, deposition rate, film thickness and substrate temperature. A comparison of X-ray diffraction and Raman measurements reveals that the phase with the smaller layer-by-layer spacing grows on top of the other]. Moreover, there is a strict correlation between evaporation rate and maximum grain size. In addition to structural we also investigated the electrical properties of pentacene thin films focussing on polymorphism and its influence on the transport properties. Apart from the fact that the charge carrier mobility is strongly influenced by the grain size it turned out that the bulk phase is related to a lower intrinisic mobility than the thin film phase.
机译:由于其出色的载体运输能力,芳烃碳酸芳烃仍然是到目前为止所研究的所有有机半导体材料中最有前景的含量之一。五烯烯出现在几种多态性结构中,即关于D(001)间距而显着不同。示出了,精确控制薄膜的外延生长过程使得不仅能够调节多态相的形成,而且还可以影响晶粒尺寸和形状。五价多晶型物的相对体积分数由若干参数确定为基板材料,沉积速率,膜厚度和基板温度。 X射线衍射和拉曼测量的比较揭示了具有较小层间间距的相位在另一个逐层间距的相位。此外,蒸发速率与最大粒度之间存在严格的相关性。除了结构之外,我们还研究了聚焦多态性的五价薄膜的电学特性及其对运输性能的影响。除了电荷载流子迁移率受到晶粒尺寸的强烈影响的事实之外,它证明,体相与薄膜相比较低的内部迁移率有关。

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