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首页> 外文期刊>Nanotechnology >Dielectrophoretic self-assembly of polarized light emitting poly(9,9-dioctylfluorene) nanofibre arrays
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Dielectrophoretic self-assembly of polarized light emitting poly(9,9-dioctylfluorene) nanofibre arrays

机译:极化发光聚(9,9-二辛基芴)纳米纤维阵列的介电泳自组装

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Conjugated polymer based 1D nanostructures are attractive building blocks for future opto-electronic nanoscale devices and systems. However, a critical challenge remains the lack of manipulation methods that enable controlled and reliable positioning and orientation of organic nanostructures in a fast, reliable and scalable manner. To address this challenge, we explore dielectrophoretic assembly of discrete poly(9,9-dioctylfluorene) nanofibres and demonstrate site selective assembly and orientation of these fibres. Nanofibre arrays were assembled preferentially at receptor electrode edges, being aligned parallel to the applied electric field with a high order parameter fit (?0.9) and exhibiting an emission dichroic ratio of ?4.0. As such, the dielectrophoretic method represents a fast, reliable and scalable self-assembly approach for manipulation of 1D organic nanostructures. The ability to fabricate nanofibre arrays in this manner could be potentially important for exploration and development of future nanoscale opto-electronic devices and systems.
机译:基于共轭聚合物的一维纳米结构是未来光电纳米级器件和系统的有吸引力的构建基块。然而,关键的挑战仍然是缺乏能够以快速,可靠和可扩展的方式实现有机纳米结构的受控和可靠定位和取向的操纵方法。为了解决这一挑战,我们探索了离散的聚(9,9-二辛基芴)纳米纤维的介电泳组装,并展示了这些纤维的定点组装和取向。纳米纤维阵列优选在受体电极边缘组装,并以高阶参数拟合(?0.9)平行于所施加的电场排列,并且发射二向色比为?4.0。因此,介电泳方法代表了一种快速,可靠和可扩展的自组装方法,用于一维有机纳米结构的操作。以这种方式制造纳米纤维阵列的能力对于探索和开发未来的纳米级光电器件和系统可能具有潜在的重要性。

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