Matches in SemOpenAlex for { <https://semopenalex.org/work/W2783241014> ?p ?o ?g. }
- W2783241014 endingPage "333" @default.
- W2783241014 startingPage "325" @default.
- W2783241014 abstract "Nanofiber nonwoven filters, especially those prepared by electrospinning, are of particular interest because of their high filtration efficiency. However, existing electrospun filters suffer from inherent limitations in that both strengths and filtration resistances of the filters leave much to be desired. Herein, we present a novel nonwoven filter that is composed of polysulphone and polyurethane nanofibers. By mimicking the honeycomb structure, a heterogeneous distribution of both fiber diameter and fiber density has been achieved. Compared with nanofiber nonwovens with plain architectures, the honeycomb-like nonwovens possess higher filtration efficiency (∼99.939%), better mechanical strength (∼105.24 N g-1) and improved quality factor (∼0.04 Pa-1). The filtration efficiency against both inorganic and organic aerosols is guaranteed through the nanofiber surface geometry and the intrinsic charge-retention capacity of polysulphone. Since the production of this nanofiber filter does not need multistep procedures and can be easily scaled up on a needleless electrospinning device, we anticipate that the strategy of endowing nanofibers with honeycomb texture and charge-retention capacity may lead to the development of advanced fiber filters." @default.
- W2783241014 created "2018-01-26" @default.
- W2783241014 creator A5006840130 @default.
- W2783241014 creator A5014851320 @default.
- W2783241014 creator A5023793769 @default.
- W2783241014 creator A5026009813 @default.
- W2783241014 creator A5028462736 @default.
- W2783241014 creator A5055610717 @default.
- W2783241014 creator A5058241856 @default.
- W2783241014 creator A5085231691 @default.
- W2783241014 date "2018-04-01" @default.
- W2783241014 modified "2023-09-23" @default.
- W2783241014 title "Honeycomb-like polysulphone/polyurethane nanofiber filter for the removal of organic/inorganic species from air streams" @default.
- W2783241014 cites W1070440965 @default.
- W2783241014 cites W1531398858 @default.
- W2783241014 cites W1881894321 @default.
- W2783241014 cites W1971963621 @default.
- W2783241014 cites W1972322328 @default.
- W2783241014 cites W1991342317 @default.
- W2783241014 cites W1999278855 @default.
- W2783241014 cites W2002254398 @default.
- W2783241014 cites W2005410627 @default.
- W2783241014 cites W2019575274 @default.
- W2783241014 cites W2020373251 @default.
- W2783241014 cites W2022003635 @default.
- W2783241014 cites W2026821144 @default.
- W2783241014 cites W2028055801 @default.
- W2783241014 cites W2028280538 @default.
- W2783241014 cites W2028899468 @default.
- W2783241014 cites W2049661780 @default.
- W2783241014 cites W2054499851 @default.
- W2783241014 cites W2059799039 @default.
- W2783241014 cites W2073053110 @default.
- W2783241014 cites W2080311936 @default.
- W2783241014 cites W2097795101 @default.
- W2783241014 cites W2103891192 @default.
- W2783241014 cites W2104206564 @default.
- W2783241014 cites W2114866798 @default.
- W2783241014 cites W2119648600 @default.
- W2783241014 cites W2142810463 @default.
- W2783241014 cites W2226670141 @default.
- W2783241014 cites W2281100532 @default.
- W2783241014 cites W2299005865 @default.
- W2783241014 cites W2304130082 @default.
- W2783241014 cites W2304839156 @default.
- W2783241014 cites W2322199348 @default.
- W2783241014 cites W2335496895 @default.
- W2783241014 cites W2345975623 @default.
- W2783241014 cites W2357034202 @default.
- W2783241014 cites W2492881364 @default.
- W2783241014 cites W2516465864 @default.
- W2783241014 cites W2518111503 @default.
- W2783241014 cites W2519793614 @default.
- W2783241014 cites W2534348542 @default.
- W2783241014 cites W2765726849 @default.
- W2783241014 cites W4237842880 @default.
- W2783241014 doi "https://doi.org/10.1016/j.jhazmat.2018.01.012" @default.
- W2783241014 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29331927" @default.
- W2783241014 hasPublicationYear "2018" @default.
- W2783241014 type Work @default.
- W2783241014 sameAs 2783241014 @default.
- W2783241014 citedByCount "49" @default.
- W2783241014 countsByYear W27832410142018 @default.
- W2783241014 countsByYear W27832410142019 @default.
- W2783241014 countsByYear W27832410142020 @default.
- W2783241014 countsByYear W27832410142021 @default.
- W2783241014 countsByYear W27832410142022 @default.
- W2783241014 countsByYear W27832410142023 @default.
- W2783241014 crossrefType "journal-article" @default.
- W2783241014 hasAuthorship W2783241014A5006840130 @default.
- W2783241014 hasAuthorship W2783241014A5014851320 @default.
- W2783241014 hasAuthorship W2783241014A5023793769 @default.
- W2783241014 hasAuthorship W2783241014A5026009813 @default.
- W2783241014 hasAuthorship W2783241014A5028462736 @default.
- W2783241014 hasAuthorship W2783241014A5055610717 @default.
- W2783241014 hasAuthorship W2783241014A5058241856 @default.
- W2783241014 hasAuthorship W2783241014A5085231691 @default.
- W2783241014 hasConcept C105795698 @default.
- W2783241014 hasConcept C106131492 @default.
- W2783241014 hasConcept C127413603 @default.
- W2783241014 hasConcept C12820456 @default.
- W2783241014 hasConcept C128489963 @default.
- W2783241014 hasConcept C144796933 @default.
- W2783241014 hasConcept C145665481 @default.
- W2783241014 hasConcept C159985019 @default.
- W2783241014 hasConcept C192562407 @default.
- W2783241014 hasConcept C201289731 @default.
- W2783241014 hasConcept C2779578285 @default.
- W2783241014 hasConcept C2992711667 @default.
- W2783241014 hasConcept C31972630 @default.
- W2783241014 hasConcept C33923547 @default.
- W2783241014 hasConcept C41008148 @default.
- W2783241014 hasConcept C519885992 @default.
- W2783241014 hasConcept C521977710 @default.
- W2783241014 hasConcept C78519656 @default.
- W2783241014 hasConcept C91129048 @default.
- W2783241014 hasConceptScore W2783241014C105795698 @default.
- W2783241014 hasConceptScore W2783241014C106131492 @default.