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Three-dimensional directed assembly of organic charge-transfer heterostructure

机译:有机的三维定向组装电荷转移异质结构

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摘要

Multicomponent crystalline heterostructures are a powerful approach to integrate different functional materials into the ordered structures. Here we describe three-dimensional spherical assembly of binary organic solids that consist of electron donor and acceptor molecules. A mechanistic study of heterostructure formation reveals that the dewetting and drying-mediated assembly processes are responsible for the spherical crystallite formation. The assembled spherical heterostructures are highly tunable, crystalline and chemically stable, exhibiting phase separation controlled optoelectronic behavior. This simple, generalizable three-dimensional assembly can be modified for the formation of ordered functional organic multicomponent heterostructures for emerging applications.
机译:多组分晶体异质结构是一个集成不同的强大方法功能材料的有序结构。在这里,我们描述三维球面装配组成的二元有机固体电子供体和受体分子。机械研究异质结构的形成揭示了去湿和drying-mediated负责装配过程球形微晶的形成。球形异质结构是高度可调,晶体,化学性质稳定,表现出相分离控制光电的行为。三维组装可以修改命令功能有机的形成多元异质结构对新兴应用程序。

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