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Molecular-Scale Structure of Pentacene Interfaces with Si (111)

机译:与Si(111)的五烯烯界面的分子级结构

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The morphology and crystal structure of the first few molecular layers of organic semiconductor thin films at organic-inorganic interfaces are important from both electronic and structural perspectives. The first upright layer of pentacene on Si (111) forms on top of a disordered layer of strongly bonded pentacene molecules in a structure similar to the pentacene monolayers formed on insulators. We describe a high-resolution structural study of this crystalline phase of pentacene using low-temperature scanning tunneling microscopy (STM). The arrangement of molecules in these layers observed with STM agrees the results of with structural studies using scattering techniques. The imaging conditions and sample preparation techniques necessary to achieve molecular resolution can be adapted to subsequent STM and scanning tunneling spectroscopy experiments probing individual structural defects including vacancies, dislocations and grain boundaries within and between islands.
机译:在有机 - 无机界面处的第一少量分子层的形态和晶体结构是电子和结构视角的重要性。在类似于在绝缘体上形成的五苯甲酰单层的结构中,Si(111)上的第一个直立层在Si(111)上形成的强键的五烯分子的顶部。我们描述了使用低温扫描隧道显微镜(STM)的五苯基晶相的高分辨率结构研究。用STM观察到这些层中分子的排列使得使用散射技术具有结构研究的结果。实现分子分辨率所必需的成像条件和样品制备技术可以适用于随后的STM和扫描隧道光谱实验,探测岛内和岛内和之间的个体结构缺陷,包括空缺,脱位和晶界。

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