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Antibacterial Activity and Protection Efficiency of Polyvinyl Butyral Nanofibrous Membrane Containing Thymol Prepared through Vertical Electrospinning

Polymers 2021 34 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Wen-Chi Lu, Wen-Chi Lu, Ching-Yi Chen, Chia‐Jung Cho, Manikandan Venkatesan, Wei‐Hung Chiang, Chi‐Ching Kuo Yang‐Yen Yu, Cheng‐Hung Lee, Wei‐Hung Chiang, Rong‐Ho Lee, Syang‐Peng Rwei, Chi‐Ching Kuo

Summary

Researchers fabricated polyvinyl butyral nanofibrous membranes containing thymol as a natural antimicrobial agent via electrospinning and demonstrated effective antibacterial activity against common pathogens, proposing the material as a safer, biodegradable alternative to synthetic antimicrobial face masks.

Body Systems

Human safety, health management, and disease transmission prevention have become crucial tasks in the present COVID-19 pandemic situation. Masks are widely available and create a safer and disease transmission-free environment. This study presents a facile method of fabricating masks through electrospinning nontoxic polyvinyl butyral (PVB) polymeric matrix with the antibacterial component Thymol, a natural phenol monoterpene. Based on the results of Japanese Industrial Standards and American Association of Textile Chemists and Colorists methods, the maximum antibacterial value of the mask against Gram-positive and Gram-negative bacteria was 5.6 and 6.4, respectively. Moreover, vertical electrospinning was performed to prepare Thymol/PVB nanofiber masks, and the effects of parameters on the submicron particulate filtration efficiency (PFE), differential pressure, and bacterial filtration efficiency (BFE) were determined. Thorough optimization of the small-diameter nanofiber-based antibacterial mask led to denser accumulation and improved PFE and pressure difference; the mask was thus noted to meet the present pandemic requirements. The as-developed nanofibrous masks have the antibacterial activity suggested by the National Standard of the Republic of China (CNS 14774) for general medical masks. Their BFE reaches 99.4%, with a pressure difference of <5 mmH<sub>2</sub>O/cm<sup>2</sup>. The mask can safeguard human health and promote a healthy environment.

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