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Temperature- and pH-Sensitive Nanohydrogels of Poly(N-Isopropylacrylamide) for Food Packaging Applications: Modelling the Swelling-Collapse Behaviour

机译:用于食品包装的聚(N-异丙基丙烯酰胺)的温度和pH敏感纳米水凝胶:溶胀-塌陷行为建模

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摘要

Temperature-sensitive poly(N-isopropylacrylamide) (PNIPA) nanohydrogels were synthesized by nanoemulsion polymerization in water-in-oil systems. Several cross-linking degrees and the incorporation of acrylic acid as comonomer at different concentrations were tested to produce nanohydrogels with a wide range of properties. The physicochemical properties of PNIPA nanohydrogels, and their relationship with the swelling-collapse behaviour, were studied to evaluate the suitability of PNIPA nanoparticles as smart delivery systems (for active packaging). The swelling-collapse transition was analyzed by the change in the optical properties of PNIPA nanohydrogels using ultraviolet-visible spectroscopy. The thermodynamic parameters associated with the nanohydrogels collapse were calculated using a mathematical approach based on the van't Hoff analysis, assuming a two-state equilibrium (swollen to collapsed). A mathematical model is proposed to predict both the thermally induced collapse, and the collapse induced by the simultaneous action of two factors (temperature and pH, or temperature and organic solvent concentration). Finally, van't Hoff analysis was compared with differential scanning calorimetry. The results obtained allow us to solve the problem of determining the molecular weight of the structural repeating unit in cross-linked NIPA polymers, which, as we show, can be estimated from the ratio of the molar heat capacity (obtained from the van't Hoff analysis) to the specific heat capacity (obtained from calorimetric measurements).
机译:通过油包水系统中的纳米乳液聚合合成了对温度敏感的聚(N-异丙基丙烯酰胺)(PNIPA)纳米水凝胶。测试了几种交联度和丙烯酸在不同浓度下作为共聚单体的掺入情况,以生产出具有广泛性能的纳米水凝胶。研究了PNIPA纳米水凝胶的理化性质及其与溶胀行为的关系,以评估PNIPA纳米粒子作为智能递送系统(用于主动包装)的适用性。使用紫外-可见光谱法通过PNIPA纳米水凝胶的光学性质变化分析了溶胀-塌陷转变。假设处于二态平衡(溶胀至塌陷),则使用基于van't Hoff分析的数学方法计算与纳米水凝胶塌陷相关的热力学参数。提出了一个数学模型来预测热致塌陷和两个因素(温度和pH或温度和有机溶剂浓度)的同时作用引起的塌陷。最后,将van't Hoff分析与差示扫描量热法进行了比较。获得的结果使我们能够解决确定交联NIPA聚合物中结构重复单元分子量的问题,正如我们所显示的那样,可以从摩尔热容比(从范特Hoff分析)到比热容(从量热测量获得)。

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