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Self-Healing Hydrogels with both LCST and UCST through Cross-Linking Induced Thermo-Response

机译:通过交联诱导的热响应同时具有LCST和UCST的自修复水凝胶

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摘要

Self-healing hydrogels have drawngreat attention in the past decade since the self-healing property is one of the characteristics of living creatures. In this study, poly(acrylamide-stat-diacetone acrylamide) P(AM-stat-DAA) with a pendant ketone group was synthesized from easy accessible monomers, and thermo-responsive self-healing hydrogels were prepared through a series of diacylhydrazide compounds cross-linking without any additional stimulus. Although the copolymers do not show thermo-response, the hydrogels became thermo-responsive andboth the lower critical solution temperature (LCST) and upper critical solution temperature (UCST) varied with the composition of the copolymer and structure of cross-linkers. With a dynamic covalent bond connection, the hydrogel showed gel-sol-gel transition triggered by acidity, redox, and ketone to acylhydrazide group ratios. This is another interesting cross-linking induced thermo-responsive (CIT) hydrogel with different properties compared to PNIPAM-based thermo-responsive hydrogels. The self-healing hydrogel with CIT properties could have great potential for application in areas related to bioscience, life simulation, and temperature switching.
机译:在过去的十年中,自修复水凝胶受到了极大的关注,因为自修复特性是生物的特征之一。在这项研究中,由易获得的单体合成了带有侧基酮基的聚(丙烯酰胺-静态-二丙酮丙烯酰胺)P(AM-stat-DAA),并通过一系列的二酰基肼化合物制备了热响应性自修复水凝胶。 -链接而无需任何其他刺激。尽管共聚物没有显示出热响应性,但水凝胶仍具有热响应性,其下临界溶液温度(LCST)和上临界溶液温度(UCST)随共聚物的组成和交联剂的结构而变化。具有动态的共价键连接,水凝胶显示出由酸度,氧化还原度和酮与酰肼基团的比率触发的凝胶-溶胶-凝胶转变。与基于PNIPAM的热响应水凝胶相比,这是另一种有趣的具有不同性质的交联诱导热响应(CIT)水凝胶。具有CIT特性的自修复水凝胶在与生物科学,生命模拟和温度转换相关的领域中可能具有巨大的应用潜力。

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