A High Efficiency, Low Resistance Antibacterial Filter Formed by Dopamine‐Mediated In Situ Deposition of Silver onto Glass Fibers

Author:

Sun Zhaoxia123ORCID,Kong Ying23,Lan Liang1,Meng Yingchao4,You Tianle1,Pauer Robin3,Wang Hao5,Zhang Yizhou6,Tang Min1ORCID,deMello Andrew4,Liang Yun1,Hu Jian1,Wang Jing23ORCID

Affiliation:

1. School of Light Industry and Engineering South China University of Technology Guangzhou 510640 China

2. Institute of Environmental Engineering ETH Zürich Zürich 8093 Switzerland

3. Laboratory for Advanced Analytical Technologies Empa Swiss Federal Laboratories for Materials Science and Technology Dübendorf 8600 Switzerland

4. Department of Chemistry & Applied Biosciences ETH Zürich Zürich 8093 Switzerland

5. National Key Laboratory of Nuclear, Biological and Chemical Disaster Protection Academy of Chemical Prevention Academy of Military Sciences Beijing 100191 China

6. School of Environmental and Chemical Engineering Shanghai University Shanghai 200444 China

Abstract

AbstractThe coating of filter media with silver is typically achieved by chemical deposition and aerosol processes. Whilst useful, such approaches struggle to provide uniform coating and are prone to blockage. To address these issues, an in situ method for coating glass fibers is presented via the dopamine‐mediated electroless metallization method, yielding filters with low air resistance and excellent antibacterial performance. It is found that the filtration efficiency of the filters is between 94 and 97% and much higher than that of silver‐coated filters produced using conventional dipping methods (85%). Additionally, measured pressure drops ranged between 100 and 150 Pa, which are lower than those associated with dipped filters (171.1 Pa). Survival rates of Escherichia coli and Bacillus subtilis bacteria exposed to the filters decreased to 0 and 15.7%±1.49, respectively after 2 h, with no bacteria surviving after 6 h. In contrast, survival rates of E. coli and B. subtilis bacteria on the uncoated filters are 92.5% and 89.5% after 6 h. Taken together, these results confirm that the in situ deposition of silver onto fiber surfaces effectively reduces pore clogging, yielding low air resistance filters that can be applied for microbial filtration and inhibition in a range of environments.

Funder

National Key Research and Development Program of China

Publisher

Wiley

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