材料科学
水溶液
海水
肿胀 的
温度系数
耐水性
化学工程
离子键合
信号(编程语言)
自愈水凝胶
电导率
烷基
水下
氢键
温度梯度
单宁酸
复合材料
低临界溶液温度
分析化学(期刊)
原位
纳米技术
工作(物理)
温度测量
作者
Qiuxia Luo,Chengmeng Wei,Yulin Zhou,Waner Chen,Cha Wen,Ning Qing,Zhenpin Lu,Liuyan Tang
标识
DOI:10.1021/acsapm.5c04659
摘要
Underwater temperature monitoring is needed for marine exploration, early warning systems in aqueous environments, and temperature tracking during aquatic activities, yet it remains challenging for hydrogel-based sensors due to swelling-induced signal drift and limited underwater sensing performance. To address this, an antiswelling charge-transfer hydrogel incorporating a viologen/pyranine charge-transfer (VP-CT) complex was developed. The VP-CT complex was formed by charge-transfer interactions and equipped with a long alkyl chain, increasing the cross-linking density and hydrophobicity of the hydrogel to improve its water resistance. The charge-transfer interactions and hydrophobic interaction from VP-CT complex, along with hydrogen bonding from poly(vinyl alcohol) (PVA) and tannic acid (TA), endowed the prepared hydrogel with exceptional swelling resistance (equilibrium swelling ratios of −4.5% in water and −6.7% in artificial seawater after 15 days). The multiple ionic groups within the VP-CT complex facilitated high ionic conductivity (0.031 S cm–1 at 25 °C) of the hydrogel. Additionally, the hydrogel-based underwater temperature sensor displayed ultrahigh temperature coefficient of resistance (TCR) of −9.86% °C1– and stable underwater temperature monitoring. This sensor also successfully detected water gradient variations when attached to human skin and served as a key element in an early warning system for sudden temperature changes in aqueous environments. This work provides a robust strategy for high-performance underwater temperature sensing in marine, sports, and biomedical applications.
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