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一种用于可穿戴热管理设备的具有优异散热性能的基于偶氮苯的创新型光热织物。

An Innovative Azobenzene-Based Photothermal Fabric with Excellent Heat Release Performance for Wearable Thermal Management Device.

作者信息

Wu Yudong, Dong Liqi, Tang Shuxin, Liu Xiao, Han Yulin, Zhang Songge, Liu Kai, Feng Wei

机构信息

Key Laboratory of Pollution Exposure and Health Intervention of Zhejiang Province, Interdisciplinary Research Academy, Zhejiang Shuren University, Hangzhou, 310021, P. R. China.

Division of Environment and Resources, College of Engineering, Westlake University, Hangzhou, Zhejiang, 310024, P. R. China.

出版信息

Small. 2024 Dec;20(49):e2404310. doi: 10.1002/smll.202404310. Epub 2024 Sep 10.

Abstract

Azobenzene (azo)-based photothermal energy storage systems have garnered great interest for their potential in solar energy conversion and storage but suffer from limitations including rely on solvents and specific wavelengths for charging process, short storage lifetime, low heat release temperature during discharging, strong rigidity and poor wearability. To address these issues, an azo-based fabric composed of tetra-ortho-fluorinated photo-liquefiable azobenzene monomer and polyacrylonitrile fabric template is fabricated using electrospinning. This fabric excels in efficient photo-charging (green light) and discharging (blue light) under visible light range, solvent-free operation, long-term energy storage (706 days), and good capacity of releasing high-temperature heat (80-95 °C) at room temperature and cold environments. In addition, the fabric maintains high flexibility without evident loss of energy-storage performance upon 1500 bending cycles, 18-h washing or 6-h soaking. The generated heat from charged fabric is facilitated by the Z-to-E isomerization energy, phase transition latent heat, and the photothermal effect of 420 nm light irradiation. Meanwhile, the temperature of heat release can be personalized for thermal management by adjusting the light intensity. It is applicable for room-temperature thermal therapy and can provide heat to the body in cold environments, that presenting a promising candidate for wearable personal thermal management.

摘要

基于偶氮苯的光热能存储系统因其在太阳能转换和存储方面的潜力而备受关注,但存在一些局限性,包括充电过程依赖溶剂和特定波长、存储寿命短、放电时热释放温度低、刚性强和耐磨性差。为了解决这些问题,采用静电纺丝法制备了一种由四邻氟光液化偶氮苯单体和聚丙烯腈织物模板组成的偶氮基织物。这种织物在可见光范围内具有高效的光充电(绿光)和放电(蓝光)性能、无溶剂操作、长期储能(706天),以及在室温和寒冷环境下释放高温热量(80-95°C)的良好能力。此外,该织物在1500次弯曲循环、18小时洗涤或6小时浸泡后仍保持高柔韧性,储能性能无明显损失。充电织物产生的热量由Z到E异构化能、相变潜热和420nm光照射的光热效应共同作用产生。同时,通过调节光强度,可以针对热管理对热释放温度进行个性化设置。它适用于室温热疗,并且可以在寒冷环境中为身体提供热量,是可穿戴个人热管理的一个有前景的候选材料。

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