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Crosslinker-Based Regulation of Swelling Behavior of Poly(N-isopropylacrylamide) Gels in a Post-Polymerization Crosslinking System

机译:聚合后交联体系中基于交联剂的聚(N-异丙基丙烯酰胺)凝胶溶胀行为的调节

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摘要

A fundamental understanding of the effect of a crosslinker on gel properties is important for the design of novel soft materials because a crosslinking is a key component of polymer gels. We focused on post-polymerization crosslinking (PPC) system utilizing activated ester chemistry, which is a powerful tool due to structural diversity of diamine crosslinkers and less susceptibility to solvent effect compared to conventional divinyl crosslinking system, to systematically evaluate the crosslinker effect on the gel properties. A variety of alkyldiamine crosslinkers was employed for the synthesis of poly( -isopropylacrylamide) (PNIPAAm) gels and it was clarified that the length of alkyl chains of diamine crosslinkers strongly affected the gelation reaction and the swelling behavior. The longer crosslinker induced faster gelation and decreased the swelling degree and the response temperature in water, while the crosslinking density did not significantly change. In addition, we were able to modify the polymer chains in parallel with crosslinking by using a monoamine modifier along with a diamine crosslinker. This simultaneous chain modification during crosslinking (SMC) was demonstrated to be useful for the regulation of the crosslinking density and the swelling behavior of PNIPAAm gels.
机译:对交联剂对凝胶性能的影响的基本理解对于新型软材料的设计很重要,因为交联是聚合物凝胶的关键成分。我们专注于利用活化酯化学的后聚合交联(PPC)系统,由于与传统的二乙烯基交联体系相比,二胺交联剂的结构多样性和对溶剂效应的敏感性较低,因此是一种功能强大的工具,可以系统地评估凝胶上的交联剂效应属性。各种烷基二胺交联剂被用于合成聚(-异丙基丙烯酰胺)(PNIPAAm)凝胶,并且澄清了二胺交联剂的烷基链的长度强烈影响凝胶化反应和溶胀行为。较长的交联剂引起更快的凝胶化,并降低了水中的溶胀度和响应温度,而交联密度没有显着变化。另外,通过使用单胺改性剂和二胺交联剂,我们能够在交联的同时修饰聚合物链。交联期间同时进行的链修饰(SMC)已证明可用于调节PNIPAAm凝胶的交联密度和溶胀行为。

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