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Graphene-Assisted Solution Growth of Vertically Oriented Organic Semiconducting Single Crystals

机译:石墨烯辅助溶液生长的垂直取向有机半导体单晶

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摘要

Vertically oriented structures of single crystalline conductors and semiconductors are of great technological importance due to their directional charge carrier transport, high device density, and interesting optical properties. However, creating such architectures for organic electronic materials remains challenging. Here, we report a facile, controllable route for producing oriented vertical arrays of single crystalline conjugated molecules using graphene as the guiding substrate. The arrays exhibit uniform morphological and crystallographic orientations. Using an oligoaniline as an example, we demonstrate this method to be highly versatile in controlling the nucleation densities, crystal sizes, and orientations. Charge carriers are shown to travel most efficiently along the vertical interfacial stacking direction with a conductivity of 12.3 S/cm in individual crystals, the highest reported to date for an aniline oligomer. These crystal arrays can be readily patterned and their current harnessed collectively over large areas, illustrating the promise for both micro- and macroscopic device applications.
机译:单晶导体和半导体的垂直取向结构由于其定向电荷载流子传输,高器件密度和令人感兴趣的光学特性而在技术上具有重要意义。然而,为有机电子材料创建这样的架构仍然具有挑战性。在这里,我们报告了一种简单,可控制的路线,以石墨烯为导向基板来生产单晶共轭分子的垂直取向阵列。阵列表现出均匀的形态学和晶体学取向。以低聚苯胺为例,我们证明了该方法在控制成核密度,晶体尺寸和取向方面具有很高的通用性。电荷载流子沿垂直界面堆叠方向的传输效率最高,单个晶体的电导率为12.3 S / cm,这是迄今为止苯胺低聚物报道的最高值。这些晶体阵列可以很容易地进行图案化,并且可以在大面积上共同利用它们的电流,这说明了微观和宏观器件应用的前景。

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