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Are block copolymer worms more effective Pickering emulsifiers than block copolymer spheres?

机译:嵌段共聚物蠕虫比嵌段共聚物球更有效吗?

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摘要

RAFT-mediated polymerisation-induced self-assembly (PISA) is used to prepare six types of amphiphilic block copolymer nanoparticles which were subsequently evaluated as putative Pickering emulsifiers for the stabilisation of n-dodecane-in-water emulsions. It was found that linear poly(glycerol monomethacrylate)-poly(2-hydroxypropyl methacrylate) (PGMA-PHPMA) diblock copolymer spheres and worms do not survive the high shear homogenisation conditions used for emulsification. Stable emulsions are obtained, but the copolymer acts as a polymeric surfactant; individual chains rather than particles are adsorbed at the oil-water interface. Particle dissociation during emulsification is attributed to the weakly hydrophobic character of the PHPMA block. Covalent stabilisation of these copolymer spheres or worms can be readily achieved by addition of ethylene glycol dimethacrylate (EGDMA) during the PISA synthesis. TEM studies confirm that the resulting cross-linked spherical or worm-like nanoparticles survive emulsification and produce genuine Pickering emulsions. Alternatively, stabilisation can be achieved by either replacing or supplementing the PHPMA block with the more hydrophobic poly(benzyl methacrylate) (PBzMA). The resulting linear spheres or worms also survive emulsification and produce stable n-dodecane-in-water Pickering emulsions. The intrinsic advantages of anisotropic worms over isotropic spheres for the preparation of Pickering emulsions are highlighted. The former particles are more strongly adsorbed at similar efficiencies compared to spheres and also enable smaller oil droplets to be produced for a given copolymer concentration. The scalable nature of PISA formulations augurs well for potential applications of anisotropic block copolymer nanoparticles as Pickering emulsifiers.
机译:RAFT介导的聚合诱导的自组装(PISA)用于制备六种两亲性嵌段共聚物纳米粒子,随后将其评估为推定的Pickering乳化剂,以稳定水包十二烷。发现线性聚(单甲基丙烯酸甘油酯)-聚(甲基丙烯酸2-羟丙酯)(PGMA-PHPMA)二嵌段共聚物球体和蜗杆不能幸免于用于乳化的高剪切均质条件。获得了稳定的乳液,但该共聚物起着聚合物表面活性剂的作用。单个链而不是颗粒被吸附在油水界面。乳化过程中的颗粒解离归因于PHPMA嵌段的弱疏水性。通过在PISA合成过程中添加乙二醇二甲基丙烯酸酯(EGDMA),可以轻松实现这些共聚物球体或蠕虫的共价稳定。 TEM研究证实,所得的交联的球形或蠕虫状纳米颗粒可幸免于乳化并产生真正的Pickering乳液。或者,可以通过用疏水性更高的聚(甲基丙烯酸苄酯)(PBzMA)代替或补充PHPMA嵌段来实现稳定化。所得的线性球体或蠕虫也可幸免于乳化作用,并产生稳定的水包正十二烷Pickering乳液。突出了各向异性蠕虫相对于各向同性球体在制备Pickering乳液方面的固有优势。与球形相比,前者的颗粒以相似的效率更强地吸附,并且对于给定的共聚物浓度,还能够产生较小的油滴。 PISA配方的可扩展性预示着各向异性嵌段共聚物纳米粒子作为Pickering乳化剂的潜在应用前景。

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