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用于体温监测传感器的基于聚N-异丙基丙烯酰胺水凝胶相变过程中的抗脱水及稳定机械性能

Antidehydration and Stable Mechanical Properties during the Phase Transition of the PNIPAM-Based Hydrogel for Body-Temperature-Monitoring Sensors.

作者信息

Zhang Xiaoyong, Ding Haoran, Zhou Yujia, Li Zhaozhao, Bai Yongping, Zhang Lidong

机构信息

Anhui Province Key Laboratory of Specialty Polymers, School of Materials Science and Engineering, The First Affiliated Hospital of Anhui University of Science and Technology, Anhui University of Science and Technology, Huainan, Anhui 232001, P.R. China.

Department of Oil Storage and Transportation Engineering, China University of Petroleum─Beijing, Beijing 100100, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Nov 13;16(45):62776-62787. doi: 10.1021/acsami.4c15748. Epub 2024 Nov 1.

Abstract

Poly(-isopropylacrylamide) (PNIPAM) enhances the reversibility and responsiveness of wearable temperature-sensitive devices. However, an open question is whether and how the hydrogel design can prevent adhesive performance loss caused by phase-transition-induced dehydration and unstable mechanical properties between devices and human skin and reduce interfacial failure. Herein, a gelatin-mesh scaffold-based hydrogel (NAGP-Gel) is constructed to inhibit dehydration and volume change, leading to stable mechanical properties, superior adhesiveness, and thermal sensing sensitivity during the phase transition. NAGP-Gel enhances the polymer chains-water interaction and weakens the degree of aggregation of polymer chains-chains, improving antidehydration properties under 45 °C conditions that are higher than the lower critical solution temperature (LCST; i.e., ∼32 °C). The mesh scaffold greatly restricts the phase-transition-induced polymer chain movement and maintains the mechanical performance. In a 60 °C environment, the maximum water loss and volume retention ratio of NAGP-Gel are only 3.58% and 97.3%, respectively. Additionally, NAGP-Gel serves as a temperature sensor, producing a stable thermal-electrical signal within the LCST range. It also can be assembled into an electronic device enabling the transmission of information and recognition of sign language via Morse code. This work broadens the application of PNIPAM in constructing intelligent hydrogels and opens the door to exploring emerging hydrogels for temperature-monitoring applications.

摘要

聚(N-异丙基丙烯酰胺)(PNIPAM)增强了可穿戴温度敏感设备的可逆性和响应性。然而,一个悬而未决的问题是水凝胶设计能否以及如何防止因相变引起的脱水和设备与人体皮肤之间不稳定的机械性能导致的粘附性能损失,并减少界面失效。在此,构建了一种基于明胶网状支架的水凝胶(NAGP-Gel),以抑制脱水和体积变化,从而在相变过程中具有稳定的机械性能、优异的粘附性和热传感灵敏度。NAGP-Gel增强了聚合物链与水的相互作用,减弱了聚合物链间的聚集程度,在高于低临界溶液温度(LCST;即~32°C)的45°C条件下改善了抗脱水性能。网状支架极大地限制了相变引起的聚合物链运动,并保持了机械性能。在60°C环境中,NAGP-Gel的最大失水量和体积保留率分别仅为3.58%和97.3%。此外,NAGP-Gel用作温度传感器,在LCST范围内产生稳定的热电信号。它还可以组装成电子设备,通过摩尔斯电码实现信息传输和手语识别。这项工作拓宽了PNIPAM在构建智能水凝胶中的应用,并为探索用于温度监测应用的新型水凝胶打开了大门。

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