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Controlling Nanostructures by Templated Templates: Inheriting Molecular Orientation in Binary Heterostructures

机译:通过模板化模板控制纳米结构:继承二元异质结构中的分子取向。

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Precise preparation strategies are required to fabricate molecular nanostructures of specific arrangement. In bottom-up approaches, where nanostructures are gradually formed by piecing together individual parts to the final structure, the self-ordering mechanisms of the involved structures are utilized. In order to achieve the desired structures regarding morphology, grain size, and orientation of the individual moieties, templates can be applied, which influence the formation process of subsequent structures. However, this strategy is of limited use for complex architectures because the templates only influence the structure formation at the interface between the template and the first compound. Here, we discuss the implementation of so-called templated templates and analyze to what extent orientations of the initial layers are inherited in the top layers of another compound to enable structural control in binary heterostructures. For that purpose, we prepared crystalline templates of the organic semiconductors pentacene and perfluoropentacene in different exclusive orientations. We observe that for templates of both individual materials the molecular orientation is inherited in the top layers of the respective counterpart. This behavior is also observed for various other molecules, indicating the robustness of this approach.
机译:需要精确的制备策略来制造特定排列的分子纳米结构。在自下而上的方法中,通过将各个部分拼合到最终结构中逐渐形成纳米结构,利用了所涉及结构的自排序机制。为了获得有关各个部分的形态,晶粒尺寸和取向的所需结构,可以使用模板,其影响后续结构的形成过程。但是,由于模板仅影响模板和第一个化合物之间界面处的结构形成,因此该策略在复杂体系结构中的使用受到限制。在这里,我们讨论所谓模板化模板的实现,并分析初始层的取向在另一种化合物的顶层中被继承到何种程度,以实现对二元异质结构的结构控制。为此,我们以不同的排他性取向制备了有机半导体并五苯和全氟并五苯的晶体模板。我们观察到,对于这两种材料的模板,分子取向是在各自对应物的顶层继承的。对于各种其他分子也观察到此行为,表明该方法的鲁棒性。

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