材料科学
光热治疗
复合材料
熔融纺丝
聚酯纤维
光热效应
聚酰胺
纺纱
热塑性聚氨酯
纤维
透射率
热的
辐照
钨
吸收(声学)
织物
合成纤维
拓本
光热光谱学
羊毛
辐射采暖
热塑性塑料
作者
J. C. Yang,Weiyun Tian,Xiaojuan Wang,Jian Zhao,Y. M. Wang,Ning Shao,Longfei Lian,Qinglin Huang,Xiao Ma
摘要
ABSTRACT Cesium tungsten bronze (Cs x WO 3 ), renowned for its high visible‐light transmittance and strong near‐infrared absorption, can be integrated with fibers to produce high‐performance photothermal materials. In this study, Cs x WO 3 was blended with polyamide 6/66 (PA6/66), and PA6/66‐Cs x WO 3 fibers were produced via melt spinning. Woven fabrics constructed from these fibers exhibit excellent photothermal properties. Surprisingly, after washing or rubbing has a negligible impact on the Cs x WO 3 content within the woven fabrics. Under 1000 W/m 2 xenon irradiation for 6 min, the maximum woven fabrics temperatures can reach up to 62.8°C, 70.1°C, and 71.1°C for pristine, washed, and rubbed samples, respectively. Notably, near‐infrared absorption and photothermal conversion performance were significantly enhanced after washing and rubbing; this is, the observed temperature increase effect of more than 11% demonstrates that it improves photothermal efficiency after washing and rubbing. Clothing made from PA6/66‐Cs x WO 3 fibers exhibit superior photothermal performance compared with ordinary clothing. These findings highlight the potential of PA6/66‐Cs x WO 3 woven fabric, with their high photothermal conversion efficiency and robust durability, for applications in cold environments, such as winter thermal apparel.
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