Enhanced antifouling and antibacterial performances on polytetrafluoroethylene microporous membranes sputtered with silver nanoparticles

Author:

Shi Xueqin1,Guo Dan1,Miao Miao1,Zhang Youjie1,Wong Ngie Hing2ORCID,Sunarso Jaka2,Li Nana13

Affiliation:

1. State Key Laboratory of Separation Membranes and Membrane Processes, School of Textile Science and Engineering, Tiangong University 1 , No. 399 Binshui Xi Road, Xiqing District, Tianjin 300387, People’s Republic of China

2. Research Centre for Sustainable Technologies, Faculty of Engineering, Computing and Science, Swinburne University of Technology 2 , Jalan Simpang Tiga, Kuching 93350, Sarawak, Malaysia

3. Cangzhou Institute of Tiangong University 3 , Cangzhou 061000, China

Abstract

A bare polytetrafluoroethylene (PTFE) membrane has poor antifouling and antibacterial performance in the application process. In this work, the silver nanoparticle layer (AgNP-layer) was deposited onto the PTFE membrane surface via the magnetron sputtering process to overcome these limitations. Several spectra and microscopic analyses were taken to characterize the synthesized PTFE/AgNP-layer composite membranes. The effects of magnetron sputtering time on the AgNP-layer distribution, microstructure, antifouling, and antibacterial properties were systematically investigated. Our results showed the successful deposition and grafting of the AgNP-layer on the PTFE membrane surface and inside the cross-sectional pores near the membrane surface. The AgNP-layer not only improved the composite membrane wettability but also reduced its protein adsorption capacity from 88 to 39 μg, thus improving the antifouling ability of the membrane. The composite membranes could also achieve 99% and 88% antibacterial rates against Escherichia coli and Staphylococcus aureus, respectively, exhibiting good antibacterial activity.

Funder

Natural Science Foundation of Tianjin

Cangzhou Institute of Tiangong University

Publisher

American Vacuum Society

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics

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