聚酰亚胺
材料科学
驻极体
纳米纤维
过滤(数学)
膜
复合材料
气溶胶
化学工程
图层(电子)
化学
有机化学
统计
数学
工程类
生物化学
作者
Fei Yin,He Li,Xinxin Zhang,Roman A. Surmenev,Jianyong Yu,Shichao Zhang
标识
DOI:10.1080/00405000.2025.2510835
摘要
Complex-component oily aerosols are more harmful to health than solid particulates, but current filtering materials are ineffective against high-temperature liquid-phase contaminants, highlighting the need for better purification methods. Herein, polyimide (PI) electrospun nanofiber membranes with spindle-bead structures and electret treatment are developed. The electret in nanofiber membranes captures oily aerosols, while spindle-bead structures create a Laplace pressure gradient that directs oil droplets from fibers to spindle nodes, enabling droplet detachment. The nanofiber filter membranes show stable surface potential (2.05 kV), and superior lipophilicity (dioctyl sebacate [DEHS] wetting time of 6 s), which enable the membranes to achieve efficient filtration of oily aerosols (>99.8%) and low-pressure resistance (∼68 Pa). Moreover, the membranes demonstrate exceptional thermal stability, retaining structural integrity and mechanical properties at 200 °C, making them ideal for high-temperature oily aerosol filtration. This strategy opens up a pathway for the design of high-temperature oily aerosol filtration materials.
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