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解析和控制囊泡模板聚合物纳米胶囊中壳的结构和功能参数。

Deciphering and Controlling Structural and Functional Parameters of the Shells in Vesicle-Templated Polymer Nanocapsules.

机构信息

Department of Chemistry , University of Connecticut , 55 North Eagleville Rd. , Storrs , Connecticut 06269-3060 , United States.

Department of Physics and Astronomy , Valparaiso University , Valparaiso , Indiana 46383 , United States.

出版信息

Langmuir. 2019 Oct 8;35(40):13020-13030. doi: 10.1021/acs.langmuir.9b01495. Epub 2019 Sep 23.

Abstract

Vesicle-templated nanocapsules are prepared by polymerization of hydrophobic acrylic monomers and cross-linkers in the hydrophobic interior of self-assembled bilayers. Understanding the mechanism of capsule formation and the influence of synthetic parameters on the structural features and functional performance of nanocapsules is critical for the rational design of functional nanodevices, an emerging trend of application of the nanocapsule platform. This study investigated the relationship between basic parameters of the formulation and synthesis of nanocapsules and structural and functional characteristics of the resulting structures. Variations in the monomer/surfactant ratio, temperature of polymerization, and the molar fraction of the free-radical initiators were investigated with a multipronged approach, including shell thickness measurements using small-angle neutron scattering, evaluation of the structural integrity of nanocapsules with scanning electron microscopy, and determination of the retention of entrapped molecules using absorbance and fluorescence spectroscopy. Surprisingly, the thickness of the shells did not correlate with the monomer/surfactant ratio, supporting the hypothesis of substantial stabilization of the surfactant bilayer with loaded monomers. Decreasing the temperature of polymerization had no effect on the spherical structure of nanocapsules but resulted in progressively lower retention of entrapped molecules, suggesting that a spherical skeleton of nanocapsule forms rapidly, followed by filling the gaps to create the structure without pinholes. Lower content of initiators resulted in slower reactions, outlining the baseline conditions for practical synthetic protocols. Taken together, these findings provide insights into the formation of nanocapsules and offer methods for controlling the properties of nanocapsules in viable synthetic methods.

摘要

囊泡模板纳米胶囊通过在自组装双层膜的疏水性内部聚合疏水性丙烯酸单体和交联剂来制备。了解胶囊形成的机制以及合成参数对纳米胶囊结构特征和功能性能的影响,对于合理设计功能纳米器件至关重要,这是纳米胶囊平台的一个应用新兴趋势。本研究考察了制剂和纳米胶囊合成的基本参数与所得结构的结构和功能特征之间的关系。通过包括小角中子散射测量壳厚度、扫描电子显微镜评估纳米胶囊结构完整性以及使用吸光度和荧光光谱法测定包封分子的保留率等多种方法,研究了单体/表面活性剂比、聚合温度和自由基引发剂的摩尔分数的变化。令人惊讶的是,壳厚度与单体/表面活性剂比不相关,这支持了负载单体对表面活性剂双层的实质性稳定的假设。降低聚合温度对纳米胶囊的球形结构没有影响,但导致包封分子的保留率逐渐降低,表明纳米胶囊的球形骨架迅速形成,然后填充间隙以形成无针孔的结构。引发剂含量较低导致反应较慢,为实际合成方案确定了基本条件。总之,这些发现为纳米胶囊的形成提供了深入的了解,并提供了在可行的合成方法中控制纳米胶囊性质的方法。

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