Applied Nano and Thermal Science Lab, Department of Mechanical Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.
Department of Agricultural Biotechnology, and Research Institute of Agriculture and Life Sciences, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.
Nano Lett. 2022 Jan 12;22(1):524-532. doi: 10.1021/acs.nanolett.1c02737. Epub 2021 Oct 19.
The worldwide proliferation of COVID-19 poses the urgent need for sterilizable and transparent air filters to inhibit virus transmission while retaining ease of communication. Here, we introduce copper nanowires to fabricate transparent and self-sterilizable air filters. Copper nanowire air filter (CNAF) allowed visible light penetration, thereby can exhibit facial expressions, helpful for better communication. CNAF effectively captured particulate matter (PM) by mechanical and electrostatic filtration mechanisms. The temperature of CNAF could be controlled by Joule-heating up to 100 °C with thermal stability. CNAF successfully inhibited the growth of because of the oligodynamic effect of copper. With heat sterilization, the antibacterial efficiency against was greatly improved up to 99.3% within 10 min. CNAF showed high reusability with stable filtration efficiency and thermal antibacterial efficacy after five repeated uses. Our result suggests an alternative form of active antimicrobial air filter in preparation for the current and future pandemic situations.
新冠病毒在全球范围内的传播,迫切需要可消毒且透明的空气过滤器来抑制病毒传播,同时保持通讯的便利性。在这里,我们引入了铜纳米线来制造透明且可自消毒的空气过滤器。铜纳米线空气过滤器(CNAF)允许可见光穿透,因此可以展示面部表情,有助于更好地交流。CNAF 通过机械和静电过滤机制有效地捕获颗粒物(PM)。CNAF 的温度可以通过焦耳加热控制在 100°C 左右,具有热稳定性。CNAF 由于铜的杀菌作用,成功地抑制了 的生长。通过热消毒,在 10 分钟内,对 的抗菌效率大大提高到 99.3%。CNAF 经过五次重复使用后,表现出了高的可重复使用性,其过滤效率和热抗菌效果稳定。我们的研究结果为当前和未来的大流行情况提供了一种替代形式的主动抗菌空气过滤器。