Feng Jundan, Feng Lingling, Xu Sijun, Zhu Chunhong, Pan Gangwei, Yao Lirong
National & Local Joint Engineering Research Center of Technical Fiber Composites for Safety and Protection, Nantong University, Nantong 226019, China.
Faculty of Textile Science and Technology, Shinshu University, Nagano 386-8567, Japan.
Nanomaterials (Basel). 2022 Jul 15;12(14):2429. doi: 10.3390/nano12142429.
Microbiological protection textile materials played an important role in the battle against the epidemic. However, the traditional active antimicrobial treatment of textiles suffers from narrow textile applicability, low chemical stability, and poor washability. Here, a high-strength adhesive nanosilver glue was synthesized by introducing nontoxic water-soluble polyurethane glue as a protectant. The as-prepared nanosilver glue could adhere firmly to the fiber surfaces by forming a flexible polymer film and could encapsulate nanosilver inside the glue. The as-prepared nanosilver had a torispherical structure with diameter of ~22 nm, zeta potential of -42.7 mV, and good dispersibility in water, and it could be stored for one year. Further studies indicated that the nanosilver glue had wide applicability to the main fabric species, such as cotton and polyester fabric, surgical mask, latex paint, and wood paint. The antimicrobial cotton and polyester fabrics were prepared by a simple impregnation-padding-baking process. The corresponding antimicrobial activity was positively correlated with nanosilver content. The treated fabrics (500 mg/kg) exhibited ultrahigh washing resistance (maintained over 99% antibacterial rates for 100 times of standard washing) and wear resistance (99% antibacterial rates for 8000 times of standard wearing), equivalent breathability to untreated fabric, improved mechanical properties, and good flexibility, demonstrating a potential in cleanable and reusable microbiological protection textiles.
微生物防护纺织材料在抗击疫情中发挥了重要作用。然而,传统的纺织品活性抗菌处理存在纺织品适用性窄、化学稳定性低和耐洗性差等问题。在此,通过引入无毒水溶性聚氨酯胶作为保护剂,合成了一种高强度粘性纳米银胶。所制备的纳米银胶可通过形成柔性聚合物膜牢固地粘附在纤维表面,并能将纳米银包裹在胶内。所制备的纳米银具有直径约为22 nm的准球形结构、ζ电位为-42.7 mV且在水中具有良好的分散性,并且可以储存一年。进一步研究表明,纳米银胶对棉、聚酯织物、医用口罩、乳胶漆和木器漆等主要织物种类具有广泛的适用性。抗菌棉和聚酯织物通过简单的浸渍-轧染-烘焙工艺制备。相应的抗菌活性与纳米银含量呈正相关。经处理的织物(500 mg/kg)表现出超高的耐洗性(100次标准洗涤后抗菌率保持在99%以上)和耐磨性(8000次标准穿着后抗菌率为99%),透气性与未处理织物相当,机械性能得到改善,柔韧性良好,在可清洗和可重复使用的微生物防护纺织品方面展现出潜力。