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Multicolor emission from large-area porous thin films constructed of nanowires of small organic molecules

机译:由小有机分子的纳米线构成的大面积多孔薄膜的多色发射

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摘要

We describe a facile low-temperature physical vapor deposition approach to fabricate porous network thin films constructed of nanowires of small organic molecules on a large area. Supermolecular assemblies of pyrene nanowires based on a combination of van der Waals forces and pi-pi stacking tend to hierarchically self-assemble to form uniform porous films using our techniques. The morphology of the films is studied and we also study several reasons influencing the process of assembly such as evaporation temperature, deposition temperature, and different kinds of substrate. The deposition temperature is determined to be the main reason for hierarchical aggregation. Typically prepared films exhibit unique optical properties, that is, multicolor red-green-blue emissions. This novel method can be applied to other organic molecular systems and may be potentially used to place nanoscaled building blocks directly on solid surfaces for fabricating large-area nanostructure-based flat screens.
机译:我们描述了一种简便的低温物理气相沉积方法来制造由大面积的有机小分子纳米线构成的多孔网络薄膜。基于范德华力和pi-pi堆叠的pyr纳米线超分子组装倾向于使用我们的技术进行分层自组装以形成均匀的多孔膜。研究了薄膜的形态,我们还研究了影响组装过程的几个原因,例如蒸发温度,沉积温度和不同种类的基材。确定沉积温度是分层聚集的主要原因。通常制备的膜表现出独特的光学性质,即多色红绿蓝发射。这种新颖的方法可以应用于其他有机分子系统,并且可以潜在地用于将纳米级构建基块直接放置在用于制造大面积基于纳米结构的平面屏幕的固体表面上。

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