热电冷却
皮肤温度
材料科学
热电效应
灵敏度(控制系统)
可穿戴计算机
标度系数
应变计
热的
主动冷却
热电偶
持续监测
水冷
热成像
热电发电机
温度测量
机械工程
电子设备和系统的热管理
被动冷却
响应时间
量具(枪械)
汽车工程
可穿戴技术
工作温度
计算机科学
热保护
声学
光电子学
作者
Xiaojiang Huang,Yuan He,Yunxiang Shi,Yunchao Hao,Yifan Ge,Huiqing Zhang,Peng Li,Feng Xu,Yi Yao
标识
DOI:10.1038/s41528-025-00476-7
摘要
Continuous and accurate nighttime monitoring of infants’ body temperature is crucial for early fever detection and timely interventions, directly impacting their health. However, existing wearable temperature sensors are often sensitive to body movement-induced strain, causing inaccurate readings, and lack integrated active temperature regulation. Here, we developed a strain-insensitive wearable temperature patch that integrates a flexible MXene-based thermal sensor with a thermoelectric cooling module for continuous monitoring and in-situ cooling treatment. The thermal sensor employs an alternating laminated architecture with interfacial interlocking, incorporating PVA/CNF/MXene/Fe(II) composites, achieving a high strain insensitivity with a gauge factor of 0.5 and high thermosensitivity with a sensitivity of 1.78% °C−1, a resolution of 0.5 °C, and a rapid response time of 7 s within a 20–70 °C range. Upon fever detection, the cooling module can lower skin temperature by 2 °C. This wearable system provides a practical solution for infant thermal management, potentially enhancing health outcomes.
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