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Design of low temperature-responsive hydrogels used as a temperature indicator

机译:低温响应水凝胶的设计用作温度指示器

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Development of highly thermo-sensitive hydrogels, particularly at a low-temperature range, has promising applications in diverse fields. Herein we designed, synthesized, and characterized tri-copolymer poly(N-tert-butyl acrylamide-co-N-isopropyl acrylamide-co-acrylamide) p(NTBAM-co-NIPAM-co-AM) hydrogels using a facile one-pot method. The copolymerization of two thermo-responsive monomers of NTBAM and NIPAM with hydrophilic AM monomers aimed to tune the temperature range of lower critical solution temperature (LCST) between 8 degrees C and 10 degrees C by varying the concentrations and molar ratios of NTBAM, NIPAM, and AM. At optimal conditions, p (NTBAM-co-NIPAM-co-AM) hydrogels showed a rapid and large deswelling by reducing their original sizes by 21% in 2 min as temperature was slightly changed from 8 degrees C to 10 degrees C. Such low-temperature-triggered deswelling behavior and tunable LCST property are likely attributed to delicate interplay between different network components and their interactions with water. Due to high temperature sensitivity (similar to 2 degrees C), large volume deswelling ratio (90%), and low temperature-responsive range (8-10 degrees C), we further demonstrated a prototype hydrogel ball actuator as temperature indicator to monitor minor temperature-induced size changes. The design strategy for this p(NTBAM-co-NIPAM-co-AM) hydrogel could be generally applicable to other thermo-responsive hydrogels with different shapes and temperature-responsive ranges, which could be used as low-temperature indicator for many applications including vaccine storage and transportation.
机译:高热敏感水凝胶的开发,特别是在低温范围内,具有不同领域的有希望的应用。在本文中我们设计了合成和表征三共聚物聚(N-叔丁基丙烯酰胺 - 共聚丙烯酰胺 - 共丙烯酰胺 - 丙烯酰胺)P(NTBAM-CO-NIPAM-CO-CO-丙烯酰胺 - 丙烯酰胺)p(NTBAM-CO-NIPAM-CO-AM)水凝胶,含有一锅罐方法。 NTBAM和NIPAM的两种热响应单体与亲水am单体的共聚合旨在通过改变NTBAM,NIPAM的浓度和摩尔比来调谐8℃和10℃之间的临界溶液温度(LCST)的温度范围。我。在最佳条件下,P(NTBAM-CO-NIPAM-CO-AM)水凝胶通过将原始尺寸的原始尺寸减少2分钟,随着温度从8摄氏度略微变化至10℃,如此低 - 触发的抛光行为和可调LCST属性可能归因于不同网络组件与水的相互作用之间的微妙相互作用。由于高温敏感性(类似于2℃),大量渗透率(90%)和低温响应范围(8-10℃),我们进一步证明了原型水凝胶球执行器作为温度指示器,以监测次要温度诱导的尺寸变化。该P(NTBAM-CO-NIPAM-CO-AM)水凝胶的设计策略通常可以应用于具有不同形状和温度响应范围的其他热响应水凝胶,其可用作许多应用的低温指示器,包括疫苗储存和运输。

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