气凝胶
材料科学
消防
芳纶
导电体
各向异性
纳米纤维
复合材料
大气温度范围
热电效应
光电子学
化学
光学
物理
有机化学
热力学
纤维
气象学
作者
Zhicai Yu,Yuhang Wan,Mi Zhou,Md Hasib Mia,Siqi Huo,Lele Huang,Jie Xu,Qing Jiang,Zhenrong Zheng,Xiao Hu,Hualing He
出处
期刊:Nano-micro Letters
[Springer Science+Business Media]
日期:2025-04-14
卷期号:17 (1): 214-214
被引量:45
标识
DOI:10.1007/s40820-025-01728-x
摘要
Enhancing the firefighting protective clothing with exceptional thermal barrier and temperature sensing functions to ensure high fire safety for firefighters has long been anticipated, but it remains a major challenge. Herein, inspired by the human muscle, an anisotropic fire safety aerogel (ACMCA) with precise self-actuated temperature monitoring performance is developed by combining aramid nanofibers with eicosane/MXene to form an anisotropically oriented conductive network. By combining the two synergies of the negative temperature-dependent thermal conductive eicosane, which induces a high-temperature differential, and directionally ordered MXene that establishes a conductive network along the directional freezing direction. The resultant ACMCA exhibited remarkable thermoelectric properties, with S values reaching 46.78 μV K-1 and κ values as low as 0.048 W m-1 K-1 at room temperature. Moreover, the prepared anisotropic aerogel ACMCA exhibited electrical responsiveness to temperature variations, facilitating its application in intelligent temperature monitoring systems. The designed anisotropic aerogel ACMCA could be incorporated into the firefighting clothing as a thermal barrier layer, demonstrating a wide temperature sensing range (50-400 °C) and a rapid response time for early high-temperature alerts (~ 1.43 s). This work provides novel insights into the design and application of temperature-sensitive anisotropic aramid nanofibers aerogel in firefighting clothing.
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