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热响应性阳离子聚合物:在可变pH、温度和共聚单体组成下的全氟和多氟烷基物质结合性能

Thermoresponsive Cationic Polymers: PFAS Binding Performance under Variable pH, Temperature and Comonomer Composition.

作者信息

Frazar E Molly, Smith Anicah, Dziubla Thomas, Hilt J Zach

机构信息

Department of Chemical and Materials Engineering, University of Kentucky, Lexington, KY 40506, USA.

出版信息

Gels. 2022 Oct 18;8(10):668. doi: 10.3390/gels8100668.

Abstract

The versatility and unique qualities of thermoresponsive polymeric systems have led to the application of these materials in a multitude of fields. One such field that can significantly benefit from the use of innovative, smart materials is environmental remediation. Of particular significance, multifunctional poly(N-isopropylacrylamide) (PNIPAAm) systems based on PNIPAAm copolymerized with various cationic comonomers have the opportunity to target and attract negatively charged pollutants such as perfluorooctanoic acid (PFOA). The thermoresponsive cationic PNIPAAm systems developed in this work were functionalized with cationic monomers -[3-(dimethylamino)propyl]acrylamide (DMAPA) and (3-acrylamidopropyl)trimethylammonium chloride (DMAPAQ). The polymers were examined for swelling capacity behavior and PFOA binding potential when exposed to aqueous environments with varying pH and temperature. Comonomer loading percentages had the most significant effect on polymer swelling behavior and temperature responsiveness as compared to aqueous pH. PFOA removal efficiency was greatly improved with the addition of DMAPA and DMAPAQ monomers. Aqueous pH and buffer selection were important factors when examining binding potential of the polymers, as buffered aqueous environments altered polymer PFOA removal quite drastically. The role of temperature on binding potential was not as expected and had no discernible effect on the ability of DMAPAQ polymers to remove PFOA. Overall, the cationic systems show interesting swelling behavior and significant PFOA removal results that can be explored further for potential environmental remediation applications.

摘要

热响应性聚合物体系的多功能性和独特性质使其在众多领域得到应用。环境修复是一个能从使用创新型智能材料中显著受益的领域。特别重要的是,基于聚(N-异丙基丙烯酰胺)(PNIPAAm)与各种阳离子共聚单体共聚的多功能PNIPAAm体系有机会靶向并吸引带负电荷的污染物,如全氟辛酸(PFOA)。在这项工作中开发的热响应性阳离子PNIPAAm体系用阳离子单体——[3-(二甲氨基)丙基]丙烯酰胺(DMAPA)和(3-丙烯酰胺基丙基)三甲基氯化铵(DMAPAQ)进行了功能化。当暴露于不同pH值和温度的水环境中时,对这些聚合物的溶胀能力行为和PFOA结合潜力进行了研究。与水相pH值相比,共聚单体负载百分比对聚合物溶胀行为和温度响应性的影响最为显著。添加DMAPA和DMAPAQ单体极大地提高了PFOA的去除效率。在研究聚合物的结合潜力时,水相pH值和缓冲液的选择是重要因素,因为缓冲的水环境会极大地改变聚合物对PFOA的去除效果。温度对结合潜力的作用并不如预期,对DMAPAQ聚合物去除PFOA的能力没有明显影响。总体而言,阳离子体系表现出有趣的溶胀行为和显著的PFOA去除效果,可进一步探索其在潜在环境修复应用中的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dbe/9602350/5d4742a966fe/gels-08-00668-g001.jpg

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