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用于按需过滤的动态自适应二维超分子组装体

Dynamic Adaptive Two-Dimensional Supramolecular Assemblies for On-Demand Filtration.

作者信息

Zhang Qi, Xing Ruo-Jie, Wang Wen-Zhi, Deng Yuan-Xin, Qu Da-Hui, Tian He

机构信息

Key Laboratory for Advanced Materials and Feringa Nobel Prize Scientist Joint Research Center, School of Chemistry and Molecular Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.

Key Laboratory for Advanced Materials and Feringa Nobel Prize Scientist Joint Research Center, School of Chemistry and Molecular Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.

出版信息

iScience. 2019 Sep 27;19:14-24. doi: 10.1016/j.isci.2019.07.007. Epub 2019 Jul 8.

Abstract

The construction of synthetic two-dimensional (2D) materials designates a pathway to the versatile chemical functionality by spatial control. However, current 2D materials with intelligence of stimuli-responsibility and adaptiveness have been unfledged. The approach reported here uses a supramolecular strategy to achieve the dynamic non-covalent self-assembly of a rationally designed small molecule monomer, producing large-area, ultra-thin, porous 2D supramolecular assemblies, which are solution-processable in aqueous solution. Importantly, the 2D supramolecular assemblies exhibit distinct adaptive capability to automatically regulate their network density and pore diameters in response to environmental temperature change, which could be developed into an "on-demand" filtration application for nanoparticles. Meanwhile, the 2D supramolecular assemblies can also perform reversible degradation/reformation by photo-irradiation. Our results not only show the simplicity, reliability, and effectiveness of supramolecular strategies in the construction of 2D materials with practical sizes, but also push the dynamic alterability and adaptation features from supramolecular assemblies toward 2D materials.

摘要

合成二维(2D)材料的构建通过空间控制指明了一条通往多功能化学功能的途径。然而,目前具有刺激响应性和适应性智能的二维材料尚未成熟。本文报道的方法采用超分子策略实现了合理设计的小分子单体的动态非共价自组装,生成大面积、超薄、多孔的二维超分子组装体,这些组装体可在水溶液中通过溶液法制备。重要的是,二维超分子组装体表现出独特的自适应能力,能够响应环境温度变化自动调节其网络密度和孔径,这有望发展成为一种针对纳米颗粒的“按需”过滤应用。同时,二维超分子组装体还可以通过光照射进行可逆降解/再形成。我们的结果不仅展示了超分子策略在构建具有实际尺寸的二维材料方面的简单性、可靠性和有效性,还将超分子组装体的动态可变性和适应性特征拓展到了二维材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0bb/6660589/eb7607c1740d/fx1.jpg

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