Zhang Zhuohao, Wang Qiao, Li Yinuo, Wang Chong, Yang Xinyuan, Shang Luoran
Shanghai Xuhui Central Hospital, Zhongshan-Xuhui Hospital, and the Shanghai Key Laboratory of Medical Epigenetics, the International Co-laboratory of Medical Epigenetics and Metabolism (Ministry of Science and Technology), Institutes of Biomedical Sciences, Fudan University, Shanghai 200032, China.
Shanghai High School International Division, Shanghai 200231, China.
Research (Wash D C). 2024 Nov 7;7:0527. doi: 10.34133/research.0527. eCollection 2024.
Polymer fibers are attracting increasing attention as a type of fundamental material for a wide range of products. However, to incorporate novel functionality, a crucial challenge is to simultaneously manipulate their structuring across multiple length scales. In this research, a facile and universal approach is proposed by directly drawing a pre-gel feedstock embedding a cellulose cholesteric liquid crystal (CLC). An in situ photo-polymerization process is applied, which not only allows for the continuous drawing of the filaments without breakup but also makes the final CLC fibers a colored appearance. More importantly, the multiscale properties of the fibers, such as their diameter, morphology, and the internal liquid crystalline ordering of the molecules (and thus structural color), can be manipulated by several controlling parameters. Combining this cross-scale tunability with a smart functional hydrogel system results in the formation of fibers with structural coloration, self-healing, electrical conduction, and thermal-sensing abilities. We believe that this platform can be extended to other hydrogel systems and will help unlock a wide variety of real-life applications.
聚合物纤维作为一类广泛应用于多种产品的基础材料,正日益受到关注。然而,为了赋予其新的功能,一个关键挑战是要同时在多个长度尺度上控制其结构。在本研究中,通过直接拉伸嵌入纤维素胆甾型液晶(CLC)的预凝胶原料,提出了一种简便通用的方法。采用原位光聚合工艺,该工艺不仅能使长丝连续拉伸而不断裂,还能使最终的CLC纤维呈现出彩色外观。更重要的是,纤维的多尺度特性,如直径、形态以及分子的内部液晶有序性(进而结构颜色),可以通过几个控制参数进行调控。将这种跨尺度可调性与智能功能水凝胶系统相结合,可形成具有结构着色、自愈合、导电和热传感能力的纤维。我们相信,这个平台可以扩展到其他水凝胶系统,并将有助于开启各种实际应用。