Self-assembly-dominated hierarchical porous nanofibrous membranes for efficient high-temperature air filtration and unidirectional water penetration
Author:
Funder
Qilu University of Technology
Publisher
Elsevier BV
Subject
Filtration and Separation,Physical and Theoretical Chemistry,General Materials Science,Biochemistry
Reference62 articles.
1. Multi-hierarchical nanofiber membrane with typical curved-ribbon structure fabricated by green electrospinning for efficient, breathable and sustainable air filtration;Deng;J. Membr. Sci.,2022
2. Recent advances in CO2 adsorption from air: a review;Yang;Curr. Pollut. Rep.,2019
3. Adsorption materials for volatile organic compounds (VOCs) and the key factors for VOCs adsorption process: a review;Li;Sep. Purif. Technol.,2020
4. Multiple hydrogen bonding self-assembly tailored electrospun polyimide hybrid filter for efficient air pollution control;Xie;J. Hazard Mater.,2021
5. Nanofiber air filters with high-temperature stability for efficient PM2.5 removal from the pollution sources;Zhang;Nano Lett.,2016
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