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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Vesicle-polymer hybrid architectures: A full account of the parachute architecture
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Vesicle-polymer hybrid architectures: A full account of the parachute architecture

机译:囊泡聚合物混合体系结构:降落伞体系结构的完整说明

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摘要

We have previously reported that polymerization of styrene in dioctadecyldimethylammonium bromide (DODAB) vesicles leads to so-called parachute-like morphologies where a polymer bead is attached to a vesicle. To learn the constructive principles of these novel polymer colloids, we present here a full characterization study. The dual nature of these particles, combining intrinsic Vesicle features with polymer colloid properties, requires characterization methods that address both the morphology (cryo-TEM, AFM, DLS) and the typical Vesicle characteristics (micro-DSC, fluorescence techniques, surfactant lysis). It is found that the vesicle characteristics after polymerization are virtually unchanged when compared to the bare vesicles. This observation can be fully accounted for by the putative complete phase separation between polymer and surfactant bilayer matrix. Several methods to release the polymer bead from its parental vesicle are presented. In a second part we investigate the relation between polymerization reaction conditions (i.e., temperature, mode of initiation, molecular weight of the polymer) and the resulting vesicle-polymer hybrid morphology. Unexpectedly, slight modifications in the reaction conditions prove to exert great influence on the produced morphology, resulting in novel vesicle-polymer architectures. It turns out that these variations in morphology are governed by intrinsic vesicle properties. As a general phenomenon, we find that polymerization of styrene in DODAB vesicles-independent of process parameters-inevitably leads to microphase separation between the amphiphilic bilayer matrix and polymer. [References: 45]
机译:先前我们已经报道过苯乙烯在二十八烷基二甲基溴化铵(DODAB)囊泡中的聚合会导致所谓的降落伞状形态,其中聚合物珠粒附着在囊泡上。为了学习这些新型聚合物胶体的构造原理,我们在这里进行了全面的表征研究。这些颗粒的双重性质,将囊泡的固有特征与聚合物胶体性质相结合,要求采用既能解决形态学(cryo-TEM,AFM,DLS)又能解决典型囊泡特征(微DSC,荧光技术,表面活性剂裂解)的表征方法。发现与裸露的囊泡相比,聚合后的囊泡特性实际上没有变化。这种观察可以通过聚合物和表面活性剂双层基质之间的假定的完全相分离来充分解释。提出了几种从其亲本囊泡释放聚合物珠的方法。在第二部分中,我们研究了聚合反应条件(即温度,引发方式,聚合物的分子量)与所得的囊-聚合物杂化形态之间的关系。出乎意料的是,对反应条件的轻微修改证明会对所产生的形态产生很大影响,从而产生新颖的囊状聚合物结构。事实证明,这些形态上的变化是由内在的囊泡特性决定的。作为一般现象,我们发现在DODAB囊泡中苯乙烯的聚合反应不受工艺参数的影响不可避免地导致两亲性双层基质与聚合物之间的微相分离。 [参考:45]

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