Sengupta Joydip, Hussain Chaudhery Mustansar
Department of Electronic Science Jogesh Chandra Chaudhuri College (Affiliated to University of Calcutta), Kolkata 700033, West Bengal, India.
Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, NJ, USA.
Carbon Trends. 2021 Jan;2:100019. doi: 10.1016/j.cartre.2020.100019. Epub 2020 Dec 24.
The rapid outbreaks of lethal viruses necessitate the development of novel antiviral substance. Besides the conventional antiviral substances, biocompatible nanomaterials also have significant potential in combating the virus at various stages of infection. Carbon nanomaterials have an impressive record against viruses and can deal with many crucial healthcare issues. In accordance with the published literature, biocompatible carbon nanomaterials have a promising prospect as an antiviral substance. Subsequently, the antiviral properties of different carbon nanomaterials namely fullerene, carbon nanotube, carbon dot and graphene oxide have been reviewed.
致命病毒的迅速爆发使得新型抗病毒物质的研发成为必要。除了传统的抗病毒物质外,生物相容性纳米材料在对抗病毒感染的各个阶段也具有巨大潜力。碳纳米材料在对抗病毒方面成绩斐然,能够应对许多关键的医疗保健问题。根据已发表的文献,生物相容性碳纳米材料作为一种抗病毒物质具有广阔的前景。随后,对富勒烯、碳纳米管、碳点和氧化石墨烯等不同碳纳米材料的抗病毒特性进行了综述。