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用于自适应温度管理和可视温度监测的可调温响应性柔性薄膜。

Tunable Thermoresponsive Flexible Films for Adaptive Temperature Management and Visual Temperature Monitoring.

机构信息

Guangdong Key Laboratory for Biomedical Measurements and Ultrasound Imaging, School of Biomedical Engineering, Health Science Center, Shenzhen University, Shenzhen 518060, China.

出版信息

ACS Appl Mater Interfaces. 2022 Jun 29;14(25):29284-29291. doi: 10.1021/acsami.2c07058. Epub 2022 Jun 15.

Abstract

Effective temperature management is essential for human thermal comfort and health. Although various temperature regulation materials have been proposed previously, there are few materials that have the dual functions of temperature monitoring and thermal management. Herein, a thermoresponsive form-stable flexible film based on phase-change materials (PCMs) and polydimethylsiloxane (PDMS) is rationally designed. The resultant versatile PCM@PDMS film is able to absorb and release heat responding to temperature stimuli and good mechanical strength. Moreover, optical visibility of the PCM@PDMS film can be reversibly converted between opaque and transparent states to monitor temperature. The switching principle is that solid PCMs embedded in the PDMS would be melted into liquid PCMs to enable light through the PCM@PDMS. The thermal experiment results suggest that the PCM@PDMS films can effectively regulate the human body temperature to adapt to the demanding environment (self-heating more than 3 °C in the cold environment or self-cooling more than 4 °C in the hot environment). Such dual-function films open a pathway to develop smart personalized thermoregulation materials for human body thermal management and temperature monitoring.

摘要

有效体温管理对人体热舒适和健康至关重要。尽管之前已经提出了各种温度调节材料,但很少有材料具有温度监测和热管理的双重功能。在这里,合理设计了一种基于相变材料(PCM)和聚二甲基硅氧烷(PDMS)的热响应型形状稳定型柔性薄膜。所得的多功能 PCM@PDMS 薄膜能够响应温度刺激吸收和释放热量,并具有良好的机械强度。此外,PCM@PDMS 薄膜的光学可见性可以在不透明和透明状态之间可逆转换,以监测温度。其开关原理是嵌入 PDMS 中的固态 PCM 会熔化成液态 PCM,从而使光线透过 PCM@PDMS。热实验结果表明,PCM@PDMS 薄膜可以有效调节人体体温,以适应苛刻的环境(在寒冷环境中自加热超过 3°C 或在炎热环境中自冷却超过 4°C)。这种双功能薄膜为开发用于人体热管理和温度监测的智能个性化温度调节材料开辟了道路。

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