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聚合物囊泡能否形成胶束囊泡?

Can polymersomes form colloidosomes?

机构信息

Department of Chemistry, The University of Sheffield, Brook Hill, Sheffield, South Yorkshire, UK.

出版信息

J Am Chem Soc. 2012 Aug 1;134(30):12450-3. doi: 10.1021/ja305789e. Epub 2012 Jul 23.

Abstract

Hydroxy-functionalized polymersomes (or block copolymer vesicles) were prepared via a facile one-pot RAFT aqueous dispersion polymerization protocol and evaluated as Pickering emulsifiers for the stabilization of emulsions of n-dodecane emulsion droplets in water. Linear polymersomes produced polydisperse oil droplets with diameters of ~50 μm regardless of the polymersome concentration in the aqueous phase. Introducing an oil-soluble polymeric diisocyanate cross-linker into the oil phase prior to homogenization led to block copolymer microcapsules, as expected. However, TEM inspection of these microcapsules after an alcohol challenge revealed no evidence for polymersomes, suggesting these delicate nanostructures do not survive the high-shear emulsification process. Thus the emulsion droplets are stabilized by individual diblock copolymer chains, rather than polymersomes. Cross-linked polymersomes (prepared by the addition of ethylene glycol dimethacrylate as a third comonomer) also formed stable n-dodecane-in-water Pickering emulsions, as judged by optical and fluorescence microscopy. However, in this case the droplet diameter varied from 50 to 250 μm depending on the aqueous polymersome concentration. Moreover, diisocyanate cross-linking at the oil/water interface led to the formation of well-defined colloidosomes, as judged by TEM studies. Thus polymersomes can indeed stabilize colloidosomes, provided that they are sufficiently cross-linked to survive emulsification.

摘要

通过简便的一锅法 RAFT 水相分散聚合制备了羟功能化聚合物囊泡(或嵌段共聚物囊泡),并将其作为 Pickering 乳化剂评价,用于稳定水中正十二烷乳液液滴的乳液。线性聚合物囊泡产生了多分散的油滴,其直径约为 50μm,与水相中的聚合物囊泡浓度无关。在均化之前向油相中引入油溶性的聚合二异氰酸酯交联剂,如预期的那样,得到了嵌段共聚物微胶囊。然而,在醇处理后对这些微胶囊进行 TEM 检查时,没有发现聚合物囊泡的证据,这表明这些脆弱的纳米结构在高剪切乳化过程中无法存活。因此,乳液液滴由单个两亲嵌段共聚物链稳定,而不是由聚合物囊泡稳定。交联聚合物囊泡(通过添加乙二醇二甲基丙烯酸酯作为第三共聚单体制备)也形成了稳定的正十二烷/水 Pickering 乳液,这可以通过光学和荧光显微镜判断。然而,在这种情况下,根据水溶液中聚合物囊泡浓度的不同,液滴直径从 50 到 250μm 变化。此外,在油水界面处的二异氰酸酯交联导致了胶体囊泡的形成,这可以通过 TEM 研究判断。因此,只要聚合物囊泡足够交联以在乳化过程中存活,它们确实可以稳定胶体囊泡。

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