Zhou Jialiang, Hu Zexu, Zabihi Fatemeh, Chen Zhigang, Zhu Meifang
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Shanghai Belt and Road Joint Laboratory of Advanced Fiber and Low-Dimension Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620 China.
Adv Fiber Mater. 2020;2(3):123-139. doi: 10.1007/s42765-020-00047-7. Epub 2020 Jun 23.
Public health events caused by viruses pose a significant risk to humans worldwide. From December 2019 till now, the rampant novel 2019 coronavirus (SAR-CoV-2) has hugely impacted China and over world. Regarding a commendable means of protection, mask technology is relatively mature, though most of the masks cannot effectively resist the viral infections. The key material of the mask is a non-woven material, which makes the barrier of virus through filtration. Due to the lack of the ability to kill the viruses, masks are prone to cross-infection and become an additional source of infection after being discarded. If the filteration and antiviral effects can be simultaneously integrated into the mask, it will be more effcient, work for a longer time and create less difficulty in post-treatment. This mini-review presents the advances in antiviral materials, different mechanisms of their activity, and their potential applications in personal protective fabrics. Furthermore, the article addresses the future challenges and directions of mask technology.
由病毒引起的公共卫生事件对全球人类构成重大风险。自2019年12月至今,肆虐的新型2019冠状病毒(SAR-CoV-2)对中国乃至全世界都产生了巨大影响。作为一种值得称赞的防护手段,口罩技术相对成熟,不过大多数口罩并不能有效抵御病毒感染。口罩的关键材料是一种无纺布材料,它通过过滤形成病毒屏障。由于缺乏杀灭病毒的能力,口罩容易造成交叉感染,并且在丢弃后会成为额外的传染源。如果能将过滤和抗病毒效果同时整合到口罩中,将会更高效、使用时间更长且后续处理难度更小。这篇综述介绍了抗病毒材料的进展、它们不同的作用机制以及在个人防护织物中的潜在应用。此外,本文还探讨了口罩技术未来面临的挑战和发展方向。