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Effect of Divalent Cation on Swelling Behavior of Anionic Microgels: Quantification and Dynamics of Ion Uptake and Release

机译:二价阳离子对阴离子微凝块肿胀行为的影响:离子吸收和释放的量化和动力学

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摘要

Poly(N-vinylcaprolactam-co-itaconate) (P(VCL-co-IADME) microgels were synthesized varying the molar ratio between VCL and IADME via free radical precipitation polymerization in the presence of quaternary ammonium surfactant. In order to determine the effect of the divalent metal ions on the structure and the swelling behavior of the microgel systems, both neutral and charged forms of the hydrogels after hydrolysis were investigated. The triggered gel collapse caused by the divalent metal ion together with the quantification of the metal ion uptake was studied in detail by titration and ion chromatography methods and revealed the minimum concentration around 0.1 mM to trigger gel collapse on the treated gels. Uptake and release dynamics of the gels were followed by turbidity measurements and were in the time-range of 2 and 17 s, depending on the composition and the concentrations.
机译:聚(N-乙烯基己内酰胺 - 共迭酸)(P(VCL-Co-IADME)微凝胶在季铵表面活性剂存在下通过自由基沉淀聚合改变VCL和IADME之间的摩尔比。为了确定效果 研究了微凝胶系统的结构和溶胀行为的二价金属离子,研究了水解后水凝胶的中性和带电形式。研究了由二价金属离子引起的触发凝胶塌陷与金属离子摄取量的定量 通过滴定和离子色谱法详细揭示了约0.1mm的最小浓度,以触发处理过的凝胶上的凝胶坍塌。凝胶的摄取和释放动力学之后是浊度测量,并且在2和17秒的时期, 取决于组合物和浓度。

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