Polymer Chemistry, Department of Chemistry - Ångström, Uppsala University, Box 538, 75121 Uppsala, Sweden.
Centre for Neutron Scattering, Uppsala University, Box 516, 75120 Uppsala, Sweden.
Adv Colloid Interface Sci. 2020 Mar;277:102109. doi: 10.1016/j.cis.2020.102109. Epub 2020 Jan 21.
Plasticisers are widely used to provide desirable mechanical properties of many polymeric materials. These small molecule additives are also known to leach from the finished products, and this not only may modify the physical properties but the distribution of these materials in the environment and in the human body can cause long-term health concerns and environmental challenges. Many of these plasticisers are esters of polyvalent acids and phthalic acid has previously been predominant but various alternatives are now being more widely explored. The eventual distribution of these compounds depends not just on solubility in aqueous media and on vapour pressure but also on their interaction with other materials, particularly lipids and amphiphiles. This review provides an overview of both the basic physical data (solubility, partition coefficients, surface tension, vapour pressure) that is available in the literature and summarises what has been learnt about the molecular interactions of various plasticisers with surfactants and lipids.
增塑剂被广泛用于提供许多聚合物材料所需的理想机械性能。这些小分子添加剂也已知会从成品中浸出,这不仅可能改变物理性质,而且这些材料在环境和人体中的分布可能会引起长期的健康问题和环境挑战。许多增塑剂是多价酸的酯,以前邻苯二甲酸占主导地位,但现在正在更广泛地探索各种替代品。这些化合物的最终分布不仅取决于在水介质中的溶解度和蒸气压,还取决于它们与其他材料(特别是脂质和两亲物)的相互作用。这篇综述提供了文献中可用的基本物理数据(溶解度、分配系数、表面张力、蒸气压)的概述,并总结了关于各种增塑剂与表面活性剂和脂质的分子相互作用的知识。