Zhang Ziyang, Wang Song, Yang Yuhao, Li Wei, Liu Pingwei, Wang Wen-Jun
State Key Lab of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
Institute of Zhejiang University - Quzhou, 78 Jiuhua Boulevard North, Quzhou 324000, China.
ACS Macro Lett. 2021 Jul 20;10(7):933-939. doi: 10.1021/acsmacrolett.1c00380. Epub 2021 Jun 28.
Hierarchical assembly of two-dimensional (2D) polymers to 3D microstructures provides new means of creating functional materials with exotic properties for extensive applications. Herein, we report an approach of assembling 2D covalent organic framework (COF) colloidosomes or microcapsules from small molecules. We polymerized monomers to produce narrowly distributed COF particles with average particle sizes greater than 490 nm, which were further used as stabilizers to prepare various water-in-oil Pickering emulsions with droplet sizes of 10-120 μm on average. The emulsion droplets were subsequently applied as templates for interfacial polymerization of the same monomers. The COF microcapsules with varied diameters and shell thicknesses of 0.2-3.1 μm were thus obtained, which possessed good stability, high crystallinity, and surface areas no less than 540 m/g. The approach also permits facile loading of water-soluble substances such as salts, dyes, or proteins. The loaded molecules demonstrated different permeability against the shell, in which 98% of the encapsulated salts could be released in 1 h while only 18% of dye molecules and almost none of the fluorescent proteins diffused out from the microcapsules. Such an assembling approach may greatly extend the applications of 2D polymers and their microcapsules.
二维(2D)聚合物向三维微结构的分级组装为制造具有奇异特性的功能材料提供了新方法,可广泛应用。在此,我们报道了一种从小分子组装二维共价有机框架(COF)胶体囊泡或微胶囊的方法。我们将单体聚合以产生平均粒径大于490 nm的窄分布COF颗粒,这些颗粒进一步用作稳定剂来制备平均液滴尺寸为10 - 120μm的各种油包水型Pickering乳液。随后将乳液滴用作相同单体界面聚合的模板。由此获得了直径和壳厚度在0.2 - 3.1μm之间变化的COF微胶囊,其具有良好的稳定性、高结晶度和不小于540 m²/g的表面积。该方法还允许轻松负载水溶性物质,如盐、染料或蛋白质。负载的分子对壳表现出不同的渗透性,其中98%的包封盐可在1小时内释放,而只有18%的染料分子和几乎没有荧光蛋白从微胶囊中扩散出来。这种组装方法可能会极大地扩展二维聚合物及其微胶囊的应用。