Afroj Shaila, Britnell Liam, Hasan Tahmid, Andreeva Daria V, Novoselov Kostya S, Karim Nazmul
Centre for Print Research The University of West of England Bristol BS16 1QY UK.
Graphene Engineering and Innovation Centre (GEIC) The University of Manchester Manchester M13 9PL UK.
Adv Funct Mater. 2021 Dec 22;31(52):2107407. doi: 10.1002/adfm.202107407. Epub 2021 Sep 16.
The COVID-19 pandemic highlighted the need for rapid tools and technologies to combat highly infectious viruses. The excellent electrical, mechanical and other functional properties of graphene and graphene-like 2D materials (2DM) can be utilized to develop novel and innovative devices to tackle COVID-19 and future pandemics. Here, the authors outline how graphene and other 2DM-based technologies can be used for the detection, protection, and continuous monitoring of infectious diseases including COVID-19. The authors highlight the potential of 2DM-based biosensors in rapid testing and tracing of viruses to enable isolation of infected patients, and stop the spread of viruses. The possibilities of graphene-based wearable devices are discussed for continuous monitoring of COVID-19 symptoms. The authors also provide an overview of the personal protective equipment, and potential filtration mechanisms to separate, destroy or degrade highly infectious viruses, and the potential of graphene and other 2DM to increase their efficiency, and enhance functional and mechanical properties. Graphene and other 2DM could not only play a vital role for tackling the ongoing COVID-19 pandemic but also provide technology platforms and tools for the protection, detection and monitoring of future viral diseases.
新冠疫情凸显了对抗高传染性病毒所需的快速工具和技术的必要性。石墨烯及类石墨烯二维材料(2DM)优异的电学、力学和其他功能特性可用于开发新颖创新的设备,以应对新冠疫情及未来的大流行疾病。在此,作者概述了基于石墨烯和其他二维材料的技术如何用于包括新冠病毒在内的传染病的检测、防护及持续监测。作者强调了基于二维材料的生物传感器在快速检测和追踪病毒以实现感染患者隔离及阻止病毒传播方面的潜力。讨论了基于石墨烯的可穿戴设备用于持续监测新冠症状的可能性。作者还概述了个人防护装备以及分离、销毁或降解高传染性病毒的潜在过滤机制,以及石墨烯和其他二维材料提高其效率、增强功能和力学性能的潜力。石墨烯和其他二维材料不仅可以在应对当前的新冠疫情中发挥至关重要的作用,还可为未来病毒性疾病的防护、检测和监测提供技术平台和工具。