Issue 17, 2021

Chemical design principles of next-generation antiviral surface coatings

Abstract

The ongoing coronavirus disease 2019 (COVID-19) pandemic has accelerated efforts to develop high-performance antiviral surface coatings while highlighting the need to build a strong mechanistic understanding of the chemical design principles that underpin antiviral surface coatings. Herein, we critically summarize the latest efforts to develop antiviral surface coatings that exhibit virus-inactivating functions through disrupting lipid envelopes or protein capsids. Particular attention is focused on how cutting-edge advances in material science are being applied to engineer antiviral surface coatings with tailored molecular-level properties to inhibit membrane-enveloped and non-enveloped viruses. Key topics covered include surfaces functionalized with organic and inorganic compounds and nanoparticles to inhibit viruses, and self-cleaning surfaces that incorporate photocatalysts and triplet photosensitizers. Application examples to stop COVID-19 are also introduced and demonstrate how the integration of chemical design principles and advanced material fabrication strategies are leading to next-generation surface coatings that can help thwart viral pandemics and other infectious disease threats.

Graphical abstract: Chemical design principles of next-generation antiviral surface coatings

Article information

Article type
Review Article
Submitted
30 Mar 2021
First published
14 Jul 2021

Chem. Soc. Rev., 2021,50, 9741-9765

Chemical design principles of next-generation antiviral surface coatings

N. Wang, A. R. Ferhan, B. K. Yoon, J. A. Jackman, N. Cho and T. Majima, Chem. Soc. Rev., 2021, 50, 9741 DOI: 10.1039/D1CS00317H

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