纳米纤维
材料科学
过滤(数学)
共聚物
多孔性
乙二醇
化学工程
聚砜
静电纺丝
PEG比率
纳米技术
复合材料
聚合物
统计
工程类
经济
数学
财务
作者
Xuzheng Ji,Ye Bian,Chengchen Zhang,Zhaoxiang Zhong,Yong Wang
出处
期刊:Small
[Wiley]
日期:2024-12-26
卷期号:21 (6): e2410692-e2410692
被引量:6
标识
DOI:10.1002/smll.202410692
摘要
Abstract Submicron particulate matter (PM) can penetrate deeply into human tissue, posing a serious threat to human health. However, the electrostatic charge of commercial respirators is easily dissipated, making it difficult to maintain long‐term filtration. Herein, a hierarchically porous filter based on nanofibers with accessible porosity and particulate‐attractive surfaces, achieving significant filtration performance is developed through polarity‐driven interactions. This is achieved by selective swelling of electrospun nanofibers of the block copolymer of polysulfone and poly(ethylene glycol) (PSF‐ b ‐PEG), in which the originally solid nanofibers are 3D perforated with the PEG chains lined along the pore walls. Thus‐produces nanofiber filters exhibit a long‐term continuous filtration with an efficiency of over 95% for PM 0.3 and a low pressure drop of only 40 Pa. In particular, it maintains superior filtration performance even under high particle concentrations and high humidity conditions. Additionally, the filter exhibits high air permeability (10814 m 3 m −2 h −1 kPa −1 ) and water vapor transmission rate (3707 g m −2 d −1 ). This work provides new strategies and understandings on the development of porous structures simultaneously exhibiting high gas permeability and efficient particulate rejection.
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