State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemistry and Chemical Engineering, Nanjing Tech University, Nanjing 210009 (P. R. China).
Angew Chem Int Ed Engl. 2014 Jul 14;53(29):7504-9. doi: 10.1002/anie.201403256. Epub 2014 Jun 4.
The preparation of nonspherical materials composed of separated multicomponents by droplet-based microfluidics remains a challenge. Based on polymerization-induced phase separation and droplet coalescence in microfluidics, we prepared emulsions of variously shaped PAM/PEG core/shell droplets and hydrogels composed of two separated components, which show flexible and transformable hierarchical structures and microarchitectures. We find that AM/PEG aqueous droplets form a core/shell structure after polymerization resulting from phase separation. Thus multicore/shell droplets are easily produced by coalescence of core/shell structures. By changing the polymerization temperature and the flow rate, the morphology of the multicore droplets and the hydrogel can be easily adjusted. The hydrogels exhibit apparent anisotropy and different protein release rates depending on their structures. The preparation technique is simple and versatile and the resulting hydrogels have potential applications in many fields.
基于微流控中的聚合诱导相分离和液滴聚结,我们制备了各种形状的 PAM/PEG 核/壳液滴乳液和由两个分离成分组成的水凝胶,它们显示出灵活和可变形的层次结构和微结构。我们发现 AM/PEG 水相液滴在聚合过程中由于相分离而形成核/壳结构。因此,通过核/壳结构的聚结很容易制备多核/壳液滴。通过改变聚合温度和流速,可以很容易地调节多核液滴和水凝胶的形态。水凝胶表现出明显的各向异性和不同的蛋白质释放速率,这取决于它们的结构。该制备技术简单且用途广泛,所得水凝胶在许多领域具有潜在的应用。