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Direct Spraying of Large-Scale Nanofiber Air Filters for Highly Efficient Particulate Matter Removal
Hua Kang1,2, Lin Niu3, Fan Zhang1
1School of Chemistry and Life Resources, Renmin University of China, Beijing 100872, China.
Abstract:
Particulate matter (PM), as a major source of air pollutants, poses a substantial threat to public health and the environment. Nanofiber air filters, fabricated by electrospinning, are widely recognized for the effectiveness in capturing haze particles. However, achieving the production of large-scale transparent filters in a time-efficient and cost-effective manner remains a challenge. Besides, the inability to recharge the electret nanofibers efficiently hinders the achievement of reusability, long-term reliability, and high-efficiency filtration. Here, a direct spraying method is developed, enabling the rapid construction of large-scale transparent air filters with polyvinylidene fluoride (PVDF) modified by graphene oxide nanosheets (GOn). The filter (PGn) with a meter-scale dimension can be produced in just a few minutes. Coupling with pyroelectric and piezoelectric properties, the filter achieves high removal efficiencies, exceeding 99% for particles ranging from PM0.3 to PM10. Electrostatic charges can be regenerated in real time under moderate temperature variations or gentle mechanical stresses. The PGn filter maintains removal efficiencies of around 90% even after working for 76 h or undergoing four washes. The proposed direct spraying strategy opens up promising pathways to produce large-scale nanofibers, holding significant potential in industrial air purification system manufacturing.

