Department of Chemistry, Renmin University of China , Beijing 100872, China.
Langmuir. 2017 Sep 12;33(36):9160-9169. doi: 10.1021/acs.langmuir.7b02326. Epub 2017 Aug 30.
One-step double emulsions via only one-step emulsification are leading to an attractive branch of emulsion research studies owing to the ease of preparation and reduced surfactant numbers. In addition to controlling the oil/water ratio, exploiting emulsifiers with desirable amphiphilicity that can stabilize both the inner and outer water/oil interfaces is crucial to the formation of one-step double emulsions. In particular, new emulsifiers with saving laborious efforts are highly preferred in consideration of low cost and practical applications. In this work, a commonly used homopolymer, polyethylene glycol (PEG), was attempted as emulsifiers to prepare emulsions via one-step emulsification. PEG is generally considered as a hydrophilic polymer and always anchored with a hydrophobic polymer to make the copolymer amphiphilic. In the water-chloroform binary system, PEG itself exhibits amphiphilic performance and tailors the formation of single emulsions or double W/O/W emulsions on the dependence of the oil/water ratio and the PEG concentration. A possible mechanism as explained by dissipative particle dynamics simulation was proposed to demonstrate the amphiphilic feature and emulsification capability of PEG. The amphiphilicity of PEG was further tuned by interacting with iodine as a result of the formation of a supramolecular complex, which, in turn, led to the conversion from single emulsions to O/W/O double emulsions. It is believed that this line of research provides inspiration for the preparation of controllable emulsions through supramolecular routes.
一步法双乳液仅通过一步乳化即可制备,由于其制备简便且表面活性剂用量减少,因此成为乳液研究的一个有吸引力的分支。除了控制油/水比之外,利用具有理想两亲性的乳化剂来稳定内外水/油界面对于一步法双乳液的形成至关重要。特别是,考虑到低成本和实际应用,具有节省劳力的新型乳化剂是首选。在这项工作中,尝试使用常用的均聚物聚乙二醇(PEG)作为乳化剂通过一步乳化法制备乳液。PEG 通常被认为是亲水性聚合物,并且总是与疏水性聚合物结合以使其共聚物具有两亲性。在水-氯仿二元体系中,PEG 本身表现出两亲性,并根据油/水比和 PEG 浓度来调整单乳液或双 W/O/W 乳液的形成。通过耗散粒子动力学模拟提出了一种可能的机制来证明 PEG 的两亲性和乳化能力。通过与碘相互作用进一步调整了 PEG 的两亲性,形成了超分子配合物,从而导致从单乳液到 O/W/O 双乳液的转变。相信这条研究路线为通过超分子途径制备可控乳液提供了启示。