Kumar Abhinandan, Soni Vatika, Singh Pardeep, Parwaz Khan Aftab Aslam, Nazim Mohammed, Mohapatra Satyabrata, Saini Vipin, Raizada Pankaj, Hussain Chaudhery Mustansar, Shaban Mohamed, Marwani Hadi M, Asiri Abdullah M
School of Advanced Chemical Sciences, Shoolini University Solan Himachal Pradesh 173229 India
Center of Excellence for Advanced Materials Research, King Abdulaziz University P. O. Box 80203 Jeddah 21589 Saudi Arabia
RSC Adv. 2022 May 6;12(22):13609-13627. doi: 10.1039/d1ra08981a. eCollection 2022 May 5.
The selection of a facile, eco-friendly, and effective methodology is the need of the hour for efficient curing of the COVID-19 virus in air, water, and many food products. Recently, semiconductor-based photocatalytic methodologies have provided promising, green, and sustainable approaches to battle against viral activation the oxidative capabilities of various photocatalysts with excellent performance under moderate conditions and negligible by-products generation as well. Considering this, recent advances in photocatalysis for combating the spread of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) are inclusively highlighted. Starting from the origin to the introduction of the coronavirus, the significant potential of photocatalysis against viral prevention and -disinfection is discussed thoroughly. Various photocatalytic material-based systems including metal-oxides, metal-free and advanced 2D materials (MXenes, MOFs and COFs) are systematically examined to understand the mechanistic insights of virus-disinfection in the human body to fight against COVID-19 disease. Also, a roadmap toward sustainable solutions for ongoing COVID-19 contagion is also presented. Finally, the challenges in this field and future perspectives are comprehensively discussed involving the bottlenecks of current photocatalytic systems along with potential recommendations to deal with upcoming pandemic situations in the future.
对于在空气、水和许多食品中有效治愈新冠病毒而言,选择一种简便、环保且有效的方法是当务之急。最近,基于半导体的光催化方法提供了有前景、绿色且可持续的途径来对抗病毒激活,各种光催化剂在温和条件下具有优异的氧化能力,且副产物生成量可忽略不计。考虑到这一点,本文全面突出了光催化在对抗严重急性呼吸综合征冠状病毒2(SARS-CoV-2)传播方面的最新进展。从冠状病毒的起源到引入,深入讨论了光催化在病毒预防和消毒方面的巨大潜力。系统地研究了包括金属氧化物、无金属和先进二维材料(MXenes、MOFs和COFs)在内的各种基于光催化材料的体系,以了解人体中病毒消毒的机理,从而对抗新冠疾病。此外,还提出了针对当前新冠疫情的可持续解决方案路线图。最后,全面讨论了该领域的挑战和未来展望,涉及当前光催化系统的瓶颈以及应对未来即将出现的大流行情况的潜在建议。