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Ionic liquids as plasticizers: Material properties, thermodynamic parameters, cytotoxicity and mammalian toxicological studies.

机译:离子液体作为增塑剂:材料性能,热力学参数,细胞毒性和哺乳动物毒理学研究。

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Ionic Liquids (ILs) were tested as plasticizers for polyvinyl chloride) or PVC. Thermodynamic parameters including the solubility parameter, the components of Hansen solubility parameters (HSPs) and the Flory-Huggins interaction parameter in polymer-plasticizer systems were investigated as predictors of compatibility. ILs were particularly difficult to analyze because experimental data (such as vapor pressure, heat of vaporization) could not be obtained. The ionic nature of ILs, in combination with several less common elements and functional groups that constitute ILs, made theoretical calculation challenging. Comparison between traditional plasticizers and ILs were used to evaluate the validity of the thermodynamic analysis. The HSPs were found to be the most accurate method in predicting compatibility between polymers and plasticizers. The predicted compatibility compared favorably to experimental observations on plasticized PVC and few other polymers.; Challenges in developing new plasticizers include improving high temperature stability and minimizing leaching of plasticizers into aqueous solutions, particularly from plasticized polymers used in children's chewable toys and medical plastics. Using FT/IR analysis, the thermal degradation of two IL-plasticized PVC samples was attributed to the chloride-based impurities present in those ILs. Leaching of ILs from plasticized PVC samples in saline solution was found to depend on the hydrophilicity of their components. Apart from some of the commonly observed leaching phenomena, disproportionate leaching of anions and cations was observed, which led to segregation and therefore phase separation of the ILs. However, further analysis is required to confirm the observed trend.; Toxicological effects of the ILs were determined using Drosophila melanogaster S2 cell culture and mice. Cytotoxicity of ILs was found to depend on their anions, cations, alkyl chain lengths in cations, aqueous solubilities, concentrations and exposure times to the cell culture. Dietary feeding of a phosphonium-based bis(trifluoromethane) sulfonylimide IL to mice at up to 50,000 mg/kg concentration was found not to cause any adverse, long term effect as part of mammalian toxicological studies. Based on these observations and the thermodynamic model developed for IL-polymer systems, novel ILs can be designed for diverse polymeric applications including the much needed benign plasticizing actions in medical plastics, children's chewable toys and food-packaging applications.
机译:测试了离子液体(ILs)作为聚氯乙烯或PVC的增塑剂。研究了聚合物增塑剂体系中的热力学参数,包括溶解度参数,Hansen溶解度参数(HSPs)的组成以及Flory-Huggins相互作用参数,作为相容性的预测指标。由于无法获得实验数据(例如蒸汽压,汽化热),因此IL尤其难以分析。 IL的离子性质与构成IL的几种较不常见的元素和官能团相结合,使理论计算具有挑战性。传统增塑剂和IL的比较用于评估热力学分析的有效性。发现HSP是预测聚合物与增塑剂之间相容性的最准确方法。预测的相容性与在增塑的PVC和少量其他聚合物上的实验观察结果相比具有优势。开发新型增塑剂的挑战包括提高高温稳定性,并最大程度地减少增塑剂向水溶液中的浸出,特别是从儿童咀嚼玩具和医用塑料中使用的增塑聚合物中浸出。使用FT / IR分析,两个IL增塑的PVC样品的热降解归因于这些IL中存在的基于氯的杂质。发现从盐溶液中增塑的PVC样品中IL的浸出取决于其组分的亲水性。除了一些通常观察到的浸出现象外,还观察到阴离子和阳离子的不均匀浸出,这导致了IL的分离和相分离。但是,需要进一步分析以确认观察到的趋势。使用果蝇S2细胞培养物和小鼠确定IL的毒理学作用。发现IL的细胞毒性取决于它们的阴离子,阳离子,阳离子中的烷基链长度,水溶性,浓度和对细胞培养物的暴露时间。作为哺乳动物毒理学研究的一部分,发现以高达50,000 mg / kg的浓度向小鼠饮食饲喂磷基双(三氟甲烷)磺酰脲IL不会引起任何不良的长期影响。基于这些观察结果和为IL聚合物系统开发的热力学模型,可以为各种聚合物应用设计新型IL,包括医用塑料,儿童可咀嚼玩具和食品包装应用中急需的良性增塑作用。

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