Huang Chongjun, Cai Yurou, Chen Xi, Ke Yu
Department of Biomedical Engineering, Key Laboratory of Biomaterials of Guangdong Higher Education Institutes, College of Life Science and Technology, Jinan University, 510632 Guangzhou, China.
Cellulose (Lond). 2022;29(2):723-750. doi: 10.1007/s10570-021-04257-z. Epub 2021 Nov 24.
Cotton is one of the most important cellulose fibers, but the absence of antimicrobial capacity along with the self-cleaning, UV protection and electric conductivity often frustrates its wider applications in many fields. Nanotechnology has provided new insights into the development of functional nanomaterials with unique chemical and physical properties. Silver has been effectively incorporated into the cotton fabrics as the antimicrobial agents due to the strong inhibitory and antimicrobial effects on a broad spectrum of bacteria, fungi and virus with low toxicity to human being. In this review, a variety of strategies have been summarized to load silver on cotton fabrics or and to fabricate high performance value-added cotton fabrics with self-cleaning, UV protection, electric conductivity and antimicrobial capability depending on the synthesis of silver coating or silver-based nanocomposite coating.
棉花是最重要的纤维素纤维之一,但缺乏抗菌能力以及自清洁、紫外线防护和导电性等特性,常常阻碍其在许多领域的更广泛应用。纳米技术为开发具有独特化学和物理性质的功能纳米材料提供了新的思路。由于银对多种细菌、真菌和病毒具有强大的抑制和抗菌作用,且对人体毒性较低,因此已被有效地作为抗菌剂掺入棉织物中。在这篇综述中,总结了多种将银负载到棉织物上以及制备具有自清洁、紫外线防护、导电性和抗菌能力的高性能增值棉织物的策略,这些策略取决于银涂层或银基纳米复合涂层的合成。