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Thermally stable antibacterial wool fabrics surface-decorated by TiON and TiON/Cu thin films

机译:TiON和TiON / Cu薄膜表面装饰的热稳定抗菌羊毛织物

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摘要

Owing to the enormous production and various applications of wool, its modification has attracted increased attention. Nowadays, antibacterial properties are essentially of premier importance; hence, there has been an increasing interest in antibacterial wool fabrics in recent years, but the inadequate thermal stability of wool fabrics has limited their use for high-quality applications. Meanwhile, surface treatment of wool fabrics has become a solution to thermal and antibacterial shortcomings. In the present work, wool fabrics sputter-deposited by titanium oxynitride (TiON) and titanium oxynitride/copper (Cu) thin films are discussed. The microstructure of thin films was characterized by scanning electron and atomic force microscopies, contact angle and antibacterial analyses. The contact angle and thermal stability of wool fabrics decorated by titanium oxynitride were limitedly enhanced, while the antibacterial activity was significantly improved, as shown by c. 90% deleterious effect against Escherichia coli, but copper addition to titanium oxynitride resulted in c. 100% bacteria obliteration. Moreover, the increase of the copper content in titanium oxynitride/copper coating decreased water contact angle, while the thermal stability and antibacterial activity were enhanced. It was found that it is possible to regulate the hydrophobicity, thermal stability and antibacterial activities of wool fabrics sputter-coated with titanium oxynitride/copper, paving the way for expanding wool fabric as an eco-friendly substance.
机译:由于羊毛的大量生产和各种用途,其改性引起了越来越多的关注。如今,抗菌性能已变得至关重要。因此,近年来对抗菌羊毛织物的兴趣日益增长,但是羊毛织物的热稳定性不足限制了其在高质量应用中的使用。同时,羊毛织物的表面处理已成为解决热和抗菌缺点的解决方案。在本工作中,讨论了用氧氮化钛(TiON)和氧氮化钛/铜(Cu)薄膜溅射沉积的羊毛织物。通过扫描电子和原子力显微镜检查,接触角和抗菌分析​​来表征薄膜的微观结构。氧氮化钛装饰的羊毛织物的接触角和热稳定性得到了有限的提高,而抗菌活性得到了显着改善,如c所示。对大肠杆菌有90%的有害作用,但是在氮氧化钛中添加铜会导致c。 100%消除细菌。此外,氮氧化钛/铜涂层中铜含量的增加降低了水接触角,同时提高了热稳定性和抗菌活性。发现可以调节用氧氮化钛/铜溅射涂覆的羊毛织物的疏水性,热稳定性和抗菌活性,为扩大羊毛织物作为生态友好物质铺平了道路。

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