Department of Mechanical Engineering, Chiba University, Chiba, 2638522, Japan.
Bio-Nano Electronics Research Centre, Toyo University, Saitama, 3508585, Japan.
Sci Rep. 2022 Sep 26;12(1):16038. doi: 10.1038/s41598-022-20459-2.
The novel severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) causative agent of the COVID-19, which is a global pandemic, has infected more than 552 million people, and killed more than 6.3 million people. SARS-CoV-2 can be transmitted through airborne route in addition to direct contact and droplet modes, the development of disinfectants that can be applied in working spaces without evacuating people is urgently needed. TiO is well known with some features of the purification, antibacterial/sterilization, making it could be developed disinfectants that can be applied in working spaces without evacuating people. Facing the severe epidemic, we expect to fully expand the application of our proposed effective approach of mechanical coating technique (MCT), which can be prepared on a large-scale fabrication of an easy-to-use TiO/Ti photocatalyst coating, with hope to curb the epidemic. The photocatalytic inactivation of SARS-CoV-2 and influenza virus, and the photocatalytic degradation of acetaldehyde (CHO) and formaldehyde (CHO) has been investigated. XRD and SEM results show that anatase TiO successfully coats on the surface of Ti coatings, while the crystal structure of anatase TiO can be increased during the following oxidation in air. The catalytic activity towards methylene blue of TiO/Ti coating balls has been significantly enhanced by the followed oxidation in air, showing a very satisfying photocatalytic degradation of CHO and CHO. Notably, the TiO/Ti photocatalyst coating balls demonstrate a significant antiviral activity, with a decrease rate of virus reached 99.96% for influenza virus and 99.99% for SARS-CoV-2.
新型严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)是导致 COVID-19 的病原体,它是一种全球性的大流行病,已经感染了超过 5.52 亿人,并导致超过 630 万人死亡。SARS-CoV-2 除了直接接触和飞沫模式外,还可以通过空气传播途径传播,因此迫切需要开发可以在不疏散人员的情况下应用于工作场所的消毒剂。TiO 具有一定的净化、抗菌/杀菌功能,因此可以开发出可以在不疏散人员的情况下应用于工作场所的消毒剂。面对严峻的疫情,我们期望能够充分扩大我们提出的机械涂层技术(MCT)的有效应用,该技术可以在大规模制备易于使用的 TiO/Ti 光催化剂涂层方面得到充分应用,以期遏制疫情。已经研究了 SARS-CoV-2 和流感病毒的光催化灭活以及乙醛(CHO)和甲醛(CHO)的光催化降解。XRD 和 SEM 结果表明,锐钛矿 TiO 成功地涂覆在 Ti 涂层的表面上,而锐钛矿 TiO 的晶体结构可以在随后的空气中氧化过程中增加。空气中随后的氧化显著提高了 TiO/Ti 涂层球对亚甲基蓝的催化活性,表现出非常令人满意的 CHO 和 CHO 的光催化降解。值得注意的是,TiO/Ti 光催化剂涂层球表现出显著的抗病毒活性,流感病毒的病毒减少率达到 99.96%,SARS-CoV-2 的病毒减少率达到 99.99%。