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Enhancing the radiative heating performance of down fibers by layer-by-layer self-assembly

机译:通过层逐层自组装增强纤维的辐射加热性能

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摘要

Filling materials and fabrics with radiative heating properties have promising applications on personal thermal management and demonstrate a series of advantages in reducing the energy consumption and improving the convenience and lightweight of warm clothing. However, the fluffiness of the down fibers is usually decreased after the functional modifications and coating, resulting in the deterioration of warmth retention and appearance. Although the warmth retention of the down fibers can be improved by decoration of Zr (IV), it is not a good way to address the problems originated from the low-loading and poor washability of Zr (IV) due to the weak interactions between the down fibers and Zr (IV). Herein, we report a novel and facile layer-by-layer (LBL) self-assembly strategy to fabricate the Zr (IV) modified down fibers with high Zr (IV) loading, excellent radiative heating performance and washability. The surface temperature of Zr (IV) modified down fibers is increased by 3.75 degrees C after being exposed to the infrared radiation source, which exceeds the state-of-the-art chemical modified down fibers. More importantly, the radiative heating performance of Zr (IV) modified down fibers deteriorates less than 5% after 8 wash cycles, exhibiting good washability. The excellent radiative heating performance is attributed to the robust coordinate bonds between phytic acid and zirconium ions. In addition, the prepared down fibers have natural fluffy velvet flowers and high fluffiness without any broken fibers owing to the moderate LBL self-assembly process. This work paves the way for the low-damage functional modifications of the down fibers and other protein materials.& nbsp; (C) 2021 Elsevier Ltd. All rights reserved.commentSuperscript/Subscript Available/comment
机译:灌装材料和织物具有辐射加热特性在个人热管理方面具有很有希望的应用,并展示了一系列优势,可降低能源消耗,提高温暖衣物的便利性和轻质。然而,在功能性修饰和涂层之后通常降低下纤维的鲜美,导致温度保留和外观的劣化。虽然通过Zr(iv)的装饰可以改善羽绒纤维的温暖保留,但由于较弱的相互作用,这不是一种解决源于低负荷和ZR(IV)的较差性的问题而不是一种好方法向下纤维和Zr(iv)。在此,我们报告了一种新颖的和容易的层次层(LBL)自组装策略,以制造具有高Zr(iv)负载,优异的辐射加热性能和可洗脱性的Zr(IV)修饰的下纤维。在暴露于红外辐射源后,改性向下纤维的Zr(IV)的表面温度在暴露于红外辐射源后增加了3.75摄氏度,这超过了最先进的化学改性的下纤维。更重要的是,在8次洗涤循环后,改性下纤维的Zr(IV)的辐射加热性能低于5%,表现出良好的可洗脱性。优异的辐射加热性能归因于植酸和锆离子之间的鲁棒坐标键。此外,由于中度LBL自组装工艺,制备的下纤维具有天然蓬松的天鹅绒花和高毛细,没有任何破碎的纤维。这项工作为下纤维和其他蛋白质材料的低损伤功能改性铺平了道路。  (c)2021 elestvier有限公司保留所有权利。&评论&上标/下标可用& /评论

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