Related Experiment Video
Updated: Sep 27, 2025

Determining Viral Disinfection Efficacy of Hot Water Laundering
Published on: June 21, 2022
A comprehensive review on antimicrobial face masks: an emerging weapon in fighting pandemics
Gayathri Pullangott1, Uthradevi Kannan1, Gayathri S1
1Department of Civil and Environmental Engineering, Indian Institute of Technology Tirupati Andhra Pradesh 517619 India shihab@iittp.ac.in sm.maliyekkal@gmail.com +91 877 2503004 +91 877 2503164.
Abstract:
The world has witnessed several incidents of epidemics and pandemics since the beginning of human existence. The gruesome effects of microbial threats create considerable repercussions on the healthcare systems. The continually evolving nature of causative viruses due to mutation or re-assortment sometimes makes existing medicines and vaccines inactive. As a rapid response to such outbreaks, much emphasis has been placed on personal protective equipment (PPE), especially face mask, to prevent infectious diseases from airborne pathogens. Wearing face masks in public reduce disease transmission and creates a sense of community solidarity in collectively fighting the pandemic. However, excessive use of single-use polymer-based face masks can pose a significant challenge to the environment and is increasingly evident in the ongoing COVID-19 pandemic. On the contrary, face masks with inherent antimicrobial properties can help in real-time deactivation of microorganisms enabling multiple-use and reduces secondary infections. Given the advantages, several efforts are made incorporating natural and synthetic antimicrobial agents (AMA) to produce face mask with enhanced safety, and the literature about such efforts are summarised. The review also discusses the literature concerning the current and future market potential and environmental impacts of face masks. Among the AMA tested, metal and metal-oxide based materials are more popular and relatively matured technology. However, the repeated use of such a face mask may pose a danger to the user and environment due to leaching/detachment of nanoparticles. So careful consideration is required to select AMA and their incorporation methods to reduce their leaching and environmental impacts. Also, systematic studies are required to establish short-term and long-term benefits.
Insights
Antimicrobial face masks offer reusable protection against airborne pathogens, reducing environmental waste from single-use masks. Research reviews antimicrobial agents for enhanced mask safety and sustainability.
Area of Science:
- Materials Science
- Public Health
- Environmental Science
Background:
- Epidemics and pandemics pose significant threats to global healthcare systems.
- Evolving viruses necessitate innovative solutions beyond traditional medicines and vaccines.
- Single-use face masks, while crucial for immediate protection, create substantial environmental challenges.
Purpose of the Study:
- To review efforts in developing antimicrobial face masks (AMFMs) with inherent antimicrobial properties.
- To assess the market potential and environmental impact of AMFMs.
- To identify challenges and future research directions for antimicrobial agents (AMA) in face mask technology.
Main Methods:
- Literature review of studies incorporating natural and synthetic antimicrobial agents into face masks.
- Analysis of current and future market trends for face masks.
- Evaluation of the environmental implications of different face mask materials and antimicrobial agents.
Main Results:
- Antimicrobial face masks offer real-time deactivation of microorganisms, enabling multiple uses and reducing secondary infections.
- Metal and metal-oxide based materials are popular AMA choices, representing a relatively mature technology.
- Concerns exist regarding nanoparticle leaching from AMFMs, posing risks to users and the environment.
Conclusions:
- Developing safe and effective AMFMs requires careful selection of AMA and incorporation methods to minimize leaching and environmental harm.
- Further systematic studies are needed to establish the short-term and long-term benefits and risks of AMFMs.
- Balancing enhanced safety, reusability, and environmental sustainability is key for the future of face mask technology.
Related Concept Videos
Antimicrobial Effectiveness
Physical Methods for Controlling Microbial Growth: Radiation and Filtration
Personal Protective Equipment
Surface Membrane Barriers
The outer layer of the skin, the epidermis, is a robust barrier comprising layers of closely packed keratinized cells. This dense arrangement prevents microbes from penetrating the body. The periodic shedding of epidermal cells...
PPE Use in Healthcare Settings I: Donning
Chemical Agents for Microbial Control

