A case study of SARS-CoV-2 transmission behavior in a severely air-polluted city (Delhi, India) and the potential usage of graphene based materials for filtering air-pollutants and controlling/monitoring the COVID-19 pandemic

IF 4.3 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL
Amrit Kumar Thakur, Ravishankar Sathyamurthy, Velraj Ramalingam, Iseult Lynch, Swellam Wafa Sharshir, Zhenjun Ma, Ganeshkumar Poongavanam, Suyeong Lee, Yeseul Jeong and Jang-Yeon Hwang
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引用次数: 10

Abstract

Globally, humanity is facing its most significant challenge in 100 years due to the novel coronavirus, SARS-CoV-2, which is responsible for COVID-19. Under the enormous pressure created by the pandemic, scientists are studying virus transmission mechanisms in order to develop effective mitigation strategies. However, no established methods have been developed to control the spread of this deadly virus. In addition, the ease in lockdown has escalated air pollution which may affect SARS-CoV-2 transmission through attachment to particulates. The present review summarizes the role of graphene nanomaterials, which show antimicrobial behavior and have antiviral efficacy, in reducing the spread of COVID-19. Graphene and its derivatives have excellent antimicrobial efficacy, providing both physical and chemical mechanisms of damage. Coupled with their lightness, optimal properties, and ease of functionalization, they are optimal nanomaterials for coating onto fabrics such as personal protection equipment, face masks and gloves to control the transmission of SARS-CoV-2 effectively. Biosensors using graphene can effectively detect the virus with high accuracy and sensitivity, providing rapid quantification. It is envisioned that the present work will boost the development of graphene-based highly sensitive, accurate and cost-effective diagnostic tools for efficiently monitoring and controlling the spread of COVID-19 and other air-borne viruses.

Abstract Image

严重空气污染城市(印度德里)SARS-CoV-2传播行为的案例研究以及石墨烯基材料在过滤空气污染物和控制/监测COVID-19大流行方面的潜在用途
在全球范围内,由于导致COVID-19的新型冠状病毒SARS-CoV-2,人类正面临100年来最重大的挑战。在大流行带来的巨大压力下,科学家们正在研究病毒传播机制,以制定有效的缓解策略。然而,目前还没有确定的方法来控制这种致命病毒的传播。此外,放松封锁加剧了空气污染,这可能会影响新冠病毒通过附着颗粒传播。本文综述了石墨烯纳米材料具有抗菌和抗病毒作用,在减少COVID-19传播中的作用。石墨烯及其衍生物具有优异的抗菌效果,提供了损伤的物理和化学机制。再加上它们的轻盈、最佳性能和易于功能化,它们是涂在个人防护装备、口罩和手套等织物上的最佳纳米材料,可以有效控制SARS-CoV-2的传播。使用石墨烯的生物传感器可以有效地检测病毒,具有高精度和灵敏度,提供快速定量。预计目前的工作将促进基于石墨烯的高灵敏度、准确和具有成本效益的诊断工具的开发,以有效监测和控制COVID-19和其他空气传播病毒的传播。
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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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