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通过溶剂化控制自组装得到的具有聚集诱导发光性质的四苯乙烯的花状超结构。

Flower-like superstructures of AIE-active tetraphenylethylene through solvophobic controlled self-assembly.

机构信息

School of Science, RMIT University, GPO Box 2476, Melbourne, Vic. 3001, Australia.

出版信息

Sci Rep. 2017 Feb 23;7:42898. doi: 10.1038/srep42898.

Abstract

The development of well-organized structures with high luminescent properties in the solid and aggregated states is of both scientific and technological interest due to their applications in nanotechnology. In this paper we described the synthesis of amphiphilic and dumbbell shaped AIE-active tetraphenylethylene (TPE) derivatives and studied their self-assembly with solvophobic control. Interestingly, both TPE derivatives form a 3D flower-shape supramolecular structure from THF/water solutions at varying water fractions. SEM microscopy was used to visualise step-wise growth of flower-shape assembly. TPE derivatives also show good mechanochromic properties which can be observed in the process of grinding, fuming and heating. These TPE derivative self-assemblies are formed due to two main important properties: (i) the TPE-core along with alkyl chains, optimizing the dispersive interactions within a construct, and (ii) amide-linkage through molecular recognition. We believe such arrangements prevent crystallization and favour the directional growth of flower-shape nanostructures in a 3D fashion.

摘要

具有高发光性能的有序结构的发展在科学和技术上都具有重要意义,因为它们在纳米技术中有应用。在本文中,我们描述了两亲性和哑铃型 AIE 活性四苯乙烯(TPE)衍生物的合成,并研究了它们在溶剂化控制下的自组装。有趣的是,两种 TPE 衍生物都能从四氢呋喃/水溶剂中形成具有不同含水量的 3D 花形超分子结构。SEM 显微镜用于可视化花形组装的逐步生长。TPE 衍生物还具有良好的机械变色性能,在研磨、冒烟和加热过程中都可以观察到。这些 TPE 衍生物自组装是由于两个主要的重要性质形成的:(i)TPE 核与烷基链一起,优化了结构内的分散相互作用,以及(ii)通过分子识别的酰胺键。我们相信,这种排列可以防止结晶,并有利于花形纳米结构在 3D 方向上的定向生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8797/5322366/daa65468c2e8/srep42898-f1.jpg

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