Zhou Hua, Li Qingshuo, Zhang Zhong, Wang Xungai, Niu Haitao
College of Textiles and Clothing, Qingdao University, Qingdao, 266071 China.
Collaborative Innovation Center for Eco-Textiles of Shandong Province and the Ministry of Education Collaborative, Qingdao University, Qingdao, 266071 China.
Adv Fiber Mater. 2023 May 22:1-37. doi: 10.1007/s42765-023-00297-1.
Cellulose-based fabrics are ubiquitous in our daily lives. They are the preferred choice for bedding materials, active sportswear, and next-to-skin apparels. However, the hydrophilic and polysaccharide characteristics of cellulose materials make them vulnerable to bacterial attack and pathogen infection. The design of antibacterial cellulose fabrics has been a long-term and on-going effort. Fabrication strategies based on the construction of surface micro-/nanostructure, chemical modification, and the application of antibacterial agents have been extensively investigated by many research groups worldwide. This review systematically discusses recent research on super-hydrophobic and antibacterial cellulose fabrics, focusing on morphology construction and surface modification. First, natural surfaces showing liquid-repellent and antibacterial properties are introduced and the mechanisms behind are explained. Then, the strategies for fabricating super-hydrophobic cellulose fabrics are summarized, and the contribution of the liquid-repellent function to reducing the adhesion of live bacteria and removing dead bacteria is elucidated. Representative studies on cellulose fabrics functionalized with super-hydrophobic and antibacterial properties are discussed in detail, and their potential applications are also introduced. Finally, the challenges in achieving super-hydrophobic antibacterial cellulose fabrics are discussed, and the future research direction in this area is proposed.
The figure summarizes the natural surfaces and the main fabrication strategies of superhydrophobic antibacterial cellulose fabrics and their potential applications.
The online version contains supplementary material available at 10.1007/s42765-023-00297-1.
纤维素基织物在我们的日常生活中无处不在。它们是床上用品、运动活性服装和贴身衣物的首选材料。然而,纤维素材料的亲水性和多糖特性使其容易受到细菌攻击和病原体感染。抗菌纤维素织物的设计一直是一项长期且持续的工作。基于表面微/纳米结构构建、化学改性以及抗菌剂应用的制备策略已被全球许多研究团队广泛研究。本文综述系统地讨论了超疏水抗菌纤维素织物的最新研究,重点关注形态构建和表面改性。首先,介绍了具有拒液和抗菌性能的天然表面,并解释了其背后的机制。然后,总结了制备超疏水纤维素织物的策略,并阐明了拒液功能对减少活菌粘附和去除死菌的贡献。详细讨论了具有超疏水和抗菌性能的功能化纤维素织物的代表性研究,并介绍了它们的潜在应用。最后,讨论了实现超疏水抗菌纤维素织物面临的挑战,并提出了该领域未来的研究方向。
该图总结了超疏水抗菌纤维素织物的天然表面、主要制备策略及其潜在应用。
在线版本包含可在10.1007/s42765-023-00297-1获取的补充材料。