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Ag/Zn 原电池型呼吸激活式活性棉非织造布:一种用于个人防护口罩的潜在抗菌层。

Ag/Zn Galvanic Couple Cotton Nonwovens with Breath-Activated Electroactivity: A Possible Antibacterial Layer for Personal Protective Face Masks.

机构信息

Industrial Research Institute of Nonwovens and Technical Textiles, College of Textiles and Clothing, Qingdao University, Qingdao 266071, P. R. China.

Shandong Center for Engineered Nonwovens, Qingdao 266071, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 15;13(49):59196-59205. doi: 10.1021/acsami.1c15113. Epub 2021 Dec 5.

Abstract

The water vapor exhaled by the human body can severely accelerate the charge dissipation of commercial face masks, thereby reducing the electrostatic adsorption efficiency and increasing the bacterial invasion risk. This study developed an electroactive antibacterial cotton nonwoven (Ag/cotton/Zn) using eco-friendly magnetron sputtering technology. The Ag/Zn electrode constructed on the surface of cotton nonwovens could produce a microelectric field in the moist environment of human respiration, which endowed Ag/cotton/Zn with excellent electroactivity. When Ag/cotton/Zn was used as an additional layer of polypropylene melt-blown nonwovens or polylactic acid nanofibers, the prepared personal protective air filter had a filtration efficiency of up to 96.8% and an appropriate pressure drop and air permeability. The antibacterial results based on bacterial aerosols showed that the antibacterial efficiency against and in 20 min was 99.74 and 99.79%, respectively, indicating an excellent electroactive killing efficiency against airborne bacteria. In addition, Ag/cotton/Zn showed excellent biological security. These results shed some light on the design and fabrication of next generation of personal protective air filter materials driven by human breathing.

摘要

人体呼出的水蒸气会严重加速商用口罩的电荷耗散,从而降低静电吸附效率并增加细菌入侵的风险。本研究采用环保的磁控溅射技术开发了一种具有电活性的抗菌棉无纺材料(Ag/cotton/Zn)。Ag/Zn 电极构建在棉无纺材料的表面,在人体呼吸的潮湿环境中会产生微电场,使 Ag/cotton/Zn 具有优异的电活性。当 Ag/cotton/Zn 用作聚丙烯熔喷无纺材料或聚乳酸纳米纤维的附加层时,所制备的个人防护空气过滤器的过滤效率高达 96.8%,压降和空气渗透率适中。基于细菌气溶胶的抗菌结果表明,对 和 的 20 分钟抗菌效率分别达到 99.74%和 99.79%,表明对空气中细菌具有出色的电活性杀灭效率。此外,Ag/cotton/Zn 表现出优异的生物安全性。这些结果为下一代由人体呼吸驱动的个人防护空气过滤材料的设计和制造提供了一些思路。

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