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用于细菌和病毒灭活的可洗导电纺织品的射频加热

Radio Frequency Heating of Washable Conductive Textiles for Bacteria and Virus Inactivation.

作者信息

Oh Ju Hyun, Martinez Aimee D, Cao Huaixuan, George Garrett W, Cobb Jared S, Sharma Poonam, Fassero Lauren A, Arole Kailash, Carr Mary A, Lovell K Michael, Shukla Jayanti, Saed Mohammad A, Tandon Ritesh, Marquart Mary E, Moores Lee C, Green Micah J

机构信息

Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, Texas77843, United States.

U.S. Army Engineer Research and Development Center, 3909 Halls Ferry Road, Vicksburg, Mississippi39180, United States.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 28;14(38):43732-43740. doi: 10.1021/acsami.2c11493. Epub 2022 Sep 19.

Abstract

The ongoing COVID-19 pandemic has increased the use of single-use medical fabrics such as surgical masks, respirators, and other personal protective equipment (PPE), which have faced worldwide supply chain shortages. Reusable PPE is desirable in light of such shortages; however, the use of reusable PPE is largely restricted by the difficulty of rapid sterilization. In this work, we demonstrate successful bacterial and viral inactivation through remote and rapid radio frequency (RF) heating of conductive textiles. The RF heating behavior of conductive polymer-coated fabrics was measured for several different fabrics and coating compositions. Next, to determine the robustness and repeatability of this heating response, we investigated the textile's RF heating response after multiple detergent washes. Finally, we show a rapid reduction of bacteria and virus by RF heating our conductive fabric. 99.9% of methicillin-resistant (MRSA) was removed from our conductive fabrics after only 10 min of RF heating; human cytomegalovirus (HCMV) was completely sterilized after 5 min of RF heating. These results demonstrate that RF heating conductive polymer-coated fabrics offer new opportunities for applications of conductive textiles in the medical and/or electronic fields.

摘要

持续的新冠疫情增加了一次性医用织物的使用,如外科口罩、呼吸器和其他个人防护装备(PPE),而这些产品面临着全球供应链短缺的问题。鉴于此类短缺情况,可重复使用的个人防护装备是理想之选;然而,可重复使用的个人防护装备的使用在很大程度上受到快速灭菌困难的限制。在这项工作中,我们展示了通过对导电纺织品进行远程快速射频(RF)加热成功实现细菌和病毒灭活。针对几种不同的织物和涂层成分测量了导电聚合物涂层织物的射频加热行为。接下来,为了确定这种加热响应的稳健性和可重复性,我们研究了多次洗涤剂洗涤后织物的射频加热响应。最后,我们展示了通过对导电织物进行射频加热可快速减少细菌和病毒。仅经过10分钟的射频加热,99.9%的耐甲氧西林金黄色葡萄球菌(MRSA)就从我们的导电织物上被去除;经过5分钟的射频加热,人巨细胞病毒(HCMV)被完全灭菌。这些结果表明,射频加热导电聚合物涂层织物为导电纺织品在医疗和/或电子领域的应用提供了新的机遇。

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