Loiseau Eve, Rühs Patrick A, Hauser Alina, Niedermair Fabian, Albrecht Gerhard, Studart André R
Complex Materials, Department of Materials, ETH Zurich , 8093 Zurich, Switzerland.
BASF Construction Solutions GmbH , Trostberg 83308, Germany.
Langmuir. 2018 Jan 9;34(1):205-212. doi: 10.1021/acs.langmuir.7b03232. Epub 2017 Dec 28.
Compartmentalized microcapsules are useful for the release of multiple cargos in medicine, agriculture, and advanced responsive materials. Although several encapsulation strategies that involve more than one cargo have been proposed, dual- or multicompartment capsules with high cargo loadings and sufficient mechanical stability are rarely reported. Here, we propose a single-step emulsification route for the preparation of strong dual-compartment capsules that can host the main cargo in their core in combination with another liquid cargo stored within their thick shell. Capsules are produced through the polymerization of the middle oil phase of water-oil-water double emulsions made by microfluidics. Compartmentalization results from the phase separation of monomers within the middle phase of the double emulsion. We investigate the effect of such phase separation process on the microstructure and mechanical properties of the capsules and eventually illustrate the potential of this approach by creating thermosensitive capsules with programmable bursting temperature. The large variety of possible mixtures of monomers and cargos that can be added in the oil and aqueous phases of the double emulsion templates makes this encapsulation approach a promising route for the fabrication of robust microcapsules for on-demand release of multiple cargos.
分隔式微胶囊在医学、农业和先进响应材料中用于多种货物的释放。尽管已经提出了几种涉及不止一种货物的包封策略,但很少有关于具有高货物装载量和足够机械稳定性的双室或多室胶囊的报道。在此,我们提出了一种单步乳化路线,用于制备坚固的双室胶囊,其核心可容纳主要货物,并与储存在其厚壳内的另一种液体货物相结合。胶囊是通过微流体制备的水-油-水双重乳液的中间油相聚合而成。分隔是由双乳液中间相内单体的相分离导致的。我们研究了这种相分离过程对胶囊微观结构和机械性能的影响,并最终通过创建具有可编程破裂温度的热敏胶囊来说明这种方法的潜力。双乳液模板的油相和水相中可以添加的大量可能的单体和货物混合物,使得这种包封方法成为制造用于按需释放多种货物的坚固微胶囊的有前途的途径。