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火花放电气溶胶生成铜基纳米粒子:结构和光学性质;在口罩抗病毒(SARS-CoV-2)和抗菌性能改善方面的应用。

Spark Discharge Aerosol-Generated Copper-Based Nanoparticles: Structural & Optical Properties; Application on the Antiviral (SARS-CoV-2) and Antibacterial Improvement of Face Masks.

机构信息

Institute of Nanoscience and Nanotechnology, National Centre for Scientific Research-Demokritos, GR-15341, Agia Paraskevi, Greece.

Greek Atomic Energy Commission, GR-15341, Agia Paraskevi, Greece.

出版信息

Chempluschem. 2024 Aug;89(8):e202400194. doi: 10.1002/cplu.202400194. Epub 2024 May 24.

Abstract

Nanoparticle formation by Spark Discharge Aerosol Generation offers low-cost fabrication of nanoparticles, without the use of chemicals or vacuum. It produces aerosol particles of a few nanometers in size with high purity. In this work, copper-based -CuO (tenorite) and Cu- nanoparticles are produced, characterized and used to modify face mask air filters, achieving the introduction of antibacterial and antiviral properties. A range of characterization techniques have been employed, down to the atomic level. The majority of the particles are CuO (of a few nanometers in size that agglomerate to form aggregates), the remainder being a small number of larger Cu particles. The particles were deposited on various substrates, mainly fiber filters in order to study them and use them as biocidal agents. On face masks, their antibacterial activity against Escherichia coli (E.coli) results in a 100 % decrease in bacteria cell viability. Their antiviral activity on face masks results in a 90 % reduction of the Severe Acute Respiratory Syndrome Corona Virus 2 (SARS-CoV-2) viability, 15 minutes post the application of the virus stock solution. This highlights the effectiveness of this approach, its simplicity, its low cost and its excellent environmental credentials.

摘要

利用火花放电气溶胶发生技术制备纳米颗粒,无需使用化学品或真空,可实现低成本纳米颗粒的制备。该技术可产生粒径为数纳米、纯度较高的气溶胶颗粒。本工作制备并表征了基于铜的纳米颗粒 -CuO(碱性碳酸铜)和 Cu-,并将其用于修饰口罩空气过滤器,以赋予其抗菌和抗病毒性能。采用了一系列的表征技术,直至原子水平。大多数颗粒为 CuO(粒径为数纳米,团聚形成聚集体),其余为少数较大的 Cu 颗粒。这些颗粒被沉积在各种基底上,主要是纤维过滤器上,以对其进行研究并将其用作杀菌剂。在口罩上,其对大肠杆菌(E.coli)的抗菌活性导致细菌细胞活力降低了 100%。在口罩上,其对严重急性呼吸系统综合征冠状病毒 2(SARS-CoV-2)的抗病毒活性在病毒原液施用 15 分钟后降低了 90%。这突出了该方法的有效性、简单性、低成本和出色的环境信誉。

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