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Structural investigation on thermoresponsive PVA/poly(methacrylate-co-N- isopropylacrylamide) microgels across the volume phase transition

机译:体积相变中热响应性PVA /聚(甲基丙烯酸酯-co-N-异丙基丙烯酰胺)微凝胶的结构研究

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摘要

Characterization of switchable microgels is a major task in drug delivery science. The study of soft polymeric devices requires a combined use of spectroscopy, microscopy, and scattering approaches enabling the characterization of nanostructured features across a volume phase transition. In this work the structural changes of poly(vinyl alcohol) based thermoreversible microgel particles which incorporate p(NiPAAm-co-methacrylate) chains across the transition temperature occurring at 33 °C have been addressed by utilizing reciprocal and direct space approaches such as small angle neutron scattering, SANS, dynamic light scattering, DLS, soft transmittance X-ray microscopy, STXM, and confocal laser scanning microscopy, CLSM, respectively. The comparison between the results obtained from those approaches allows an evaluation of the driving forces acting in the transition and reveals the changes in the microgel structure at nanoscale level. The structure of the poly(vinyl alcohol) based microgel particles, incorporating p(NiPAAm) sequences, consist of a hydrogel core and of a crown of polymer chains projected, at room temperature, in aqueous medium. An increase of the temperature above 33 °C causes a volume phase transition of the system characterized by the collapse of the particle core and of the chains grafted at the particle surface. This transition is accompanied by a massive release of water and an increase of the interface with the dispersing aqueous medium, causing the passage from a permeable to a semipermeable structure.
机译:可切换微凝胶的表征是药物输送科学中的主要任务。对软聚合物器件的研究需要结合使用光谱学,显微镜学和散射方法,以表征整个体积相变中的纳米结构特征。在这项工作中,通过利用互易和直接的空间方法(例如小角度)解决了基于聚乙烯醇的热可逆微凝胶颗粒的结构变化,该颗粒在整个转变温度下于33°C掺入了p(NiPAAm-co-甲基丙烯酸共聚物)链。中子散射,SANS,动态光散射,DLS,软透射X射线显微镜STXM和共聚焦激光扫描显微镜CLSM。从这些方法获得的结果之间的比较允许评估作用在过渡过程中的驱动力,并揭示纳米级水平的微凝胶结构的变化。掺入p(NiPAAm)序列的基于聚乙烯醇的微凝胶颗粒的结构由水凝胶核心和室温下投射在水性介质中的聚合物链的冠状物组成。温度升高到33°C以上会导致系统的体积相变,其特征是颗粒核和在颗粒表面接枝的链塌陷。这种转变伴随着大量的水释放和与分散的水性介质的界面的增加,导致从可渗透的结构过渡到半渗透的结构。

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