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Self-Assembly of rGO Coated Nanorods into Aligned Thick Films

机译:RGO涂覆纳米棒的自组装成对齐的厚膜

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摘要

Self-assembly is a very effective and popular method to create monolayers or thin films of aligned nanorods and ellipsoids. Nevertheless, there has been little attention to forming thick films of aligned nanorods using this approach. Here, the self-assembly mechanism of nanorods coated with reduced graphene oxide in thick films with both a surface and a bulk alignment process is underpinned. The alignment method is robust and results in films with up to 50% higher volumetric density compared to nonaligned films of the same material. To optimize the coating process, an image processing script is implemented that quantifies the quality of the alignment based on a fast Fourier transform of nanorod electron microscope images. Based on this analysis, parameters are identified that influence the alignment to optimize the process for obtaining large area domains. Finally, dip-coating, blade casting and zone coating are tested and compared and lithographically patterned substrates are used to template the self-assembly process.
机译:自组装是一种非常有效和流行的方法,用于制造单层或薄膜的对齐的纳米棒和椭圆体。然而,使用这种方法,几乎​​没有注意形成对齐的纳米棒的厚膜。这里,覆盖具有表面和堆积对准过程的厚膜中涂覆有厚薄膜的纳米棒的纳米棒的自组装机理。与相同材料的非基础薄膜相比,对准方法是稳健的,并且具有高达50%的容积密度的薄膜。为了优化涂覆过程,实现了图像处理脚本,其基于纳米棒电子显微镜图像的快速傅里叶变换来定量对准的质量。基于该分析,识别参数,这些参数影响对准以优化获得大面积域的过程。最后,测试和比较浸涂,叶片铸造和区涂层,并且光谱图案化基板用于模板自组装过程。

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