In-situ polarized coaxial PVDF/PL nanofiber filtration membrane with high efficiency, low resistance and antimicrobial properties

被引:0
|
作者
Han, Ling [1 ]
Diao, Xinyi [1 ]
Jia, Qi [1 ]
Ma, Wanqi [1 ]
Wang, Qi [1 ]
机构
[1] Xian Polytechn Univ, Sch Textile Sci & Engn, Xian, Peoples R China
关键词
Coaxial electrospinning; core-sheath structure; in-situ polarized; air filter; low air resistance; antimicrobial; Physalis alkekengi Linn; INDUCED PHASE-SEPARATION; FIBROUS MEMBRANES; PHYSALIS-ALKEKENGI; PARTICULATE FILTRATION; INTESTINAL MICROFLORA; EXTRACTS; FILTER; VITRO;
D O I
10.1177/00405175241241237
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
Aerosols are prone to breed bacteria on air filtration materials so as to cause secondary air pollution, especially carrying bacteria and viruses. This paper utilized coaxial electrospinning technology with traditional Chinese medicine Physalis alkekengi Linn as the core layer antibacterial material and polyvinylidene fluoride/polyacrylonitrile mixed solution as the shell layer material. Nonsolvent phase separation technology was employed to prepare the porous shell layer, achieving sustained slow-release and long-lasting antibacterial effects from the core P. alkekengi Linn. In addition, an in-situ polarization technology from high voltage in electrospinning process was adopted to achieve permanent polarization of polyvinylidene fluoride, which changed from alpha -crystal to beta -crystal. Using the electrostatic charge adsorption effect and the ultra-fine pore size screening of the nanofiber membrane, high-efficiency and low-resistance filtration of aerosols above 0.3 mu m was achieved (99.98% filtration efficiency and filtration resistance less than 25Pa). It can be widely used in the field of air filtration and protection in high-risk environments such as stations, schools, and hospitals, achieving long-lasting antibacterial, high-efficiency, and low-resistance air filtration and protection.
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页数:9
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