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基于废棉纤维素纳米晶体的具有湿度响应的结构色薄膜

Structural color film with humidity response based on cellulose nanocrystals from waste cotton.

作者信息

Sun Juanjuan, Tan Jialing, Tian Tongshu, Zhang Chen, Wang Chaoxia

机构信息

College of Textile Science and Engineering, Jiangnan University, 1800 Lihu Road, Wuxi 214122, PR China.

College of Textile Science and Engineering, Jiangnan University, 1800 Lihu Road, Wuxi 214122, PR China.

出版信息

Int J Biol Macromol. 2025 Aug;319(Pt 2):145473. doi: 10.1016/j.ijbiomac.2025.145473. Epub 2025 Jun 22.

Abstract

Utilizing sulfuric acid acidolysis to extract cellulose nanocrystals (CNCs) from waste cotton offers a sustainable resource for humidity-responsive materials. Prolonging the acidolysis duration from 30 to 90 min systematically reduces the CNCs' aspect ratio from approximately 30 to 17. Notably, CNC suspensions with an aspect ratio of ~30 self-assemble into red structural color films, whereas those with an aspect ratio of ~17 give rise to blue films. By tuning the aspect ratio, the self-assembly behavior of CNCs can be precisely controlled, resulting in humidity-responsive films manifesting a spectrum of vivid structural colors. These films exhibit fully reversible color variation under fluctuating humidity levels, effectively translating changes in ambient moisture into distinctive visual signals. In particular, when the relative humidity increases from 11 % to 97 %, the color evolves from blue to red, accompanied by a diffraction peak shift from 475 nm to 693 nm. Beyond demonstrating a facile route to humidity-responsive photonic materials, this work underscores the high-value reuse of cotton waste, paving the way for broader waste-to-resource approaches and contributing to primary resource conservation.

摘要

利用硫酸酸解从废棉中提取纤维素纳米晶体(CNC)为湿度响应材料提供了一种可持续资源。将酸解时间从30分钟延长至90分钟会使CNC的长径比从约30系统性地降至17。值得注意的是,长径比约为30的CNC悬浮液自组装成红色结构色薄膜,而长径比约为17的则形成蓝色薄膜。通过调整长径比,可以精确控制CNC的自组装行为,从而得到呈现一系列鲜艳结构色的湿度响应薄膜。这些薄膜在湿度波动下表现出完全可逆的颜色变化,能有效地将环境湿度的变化转化为独特的视觉信号。特别是当相对湿度从11%增加到97%时,颜色从蓝色变为红色,同时衍射峰从475纳米移至693纳米。这项工作不仅展示了一条制备湿度响应光子材料的简便途径,还强调了废棉的高价值再利用,为更广泛的废物资源化方法铺平了道路,并有助于保护主要资源。

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