Matches in SemOpenAlex for { <https://semopenalex.org/work/W4320730503> ?p ?o ?g. }
- W4320730503 endingPage "294" @default.
- W4320730503 startingPage "286" @default.
- W4320730503 abstract "The rise of reverse osmosis membranes (RO) has attracted significant attention, which is pivotal to addressing the water shortage. Superior permeability and high selectivity are extremely critical criteria for RO membranes. Therefore, in this study, we reported a novel strategy: pressure spray interface polymerization (PSIP) to prepare ultrathin RO composite membranes. In the approach, besides the developed novel technique, highly permeable holey graphene oxide (HGO) containing nanopores was also used to refine the size of the transport nanochannels during the reaction of m-phenylenediamine (MPD) and the trimethyl chloride (TMC). Meanwhile, the electrostatic interaction between the HGO and MPD provided a solid guarantee for good dispersion in the composite membrane. The resultant pressure spray interface polymerization-highly permeable holey graphene oxide (PSIP-HGO) composite membrane displayed high salt rejection and water permeance, which showed high water permeance of 4.0 Lm−2h−1bar−1 and Na2SO4 rejection of 95% in a concentration of 2000 ppm under 5 bar. Moreover, the PSIP-HGO membrane showed outstanding long-term stability and high chemical stability. Therefore, our work may provide a feasible pathway for designing advanced RO membranes for water desalination." @default.
- W4320730503 created "2023-02-15" @default.
- W4320730503 creator A5003832506 @default.
- W4320730503 creator A5025851882 @default.
- W4320730503 creator A5025891050 @default.
- W4320730503 creator A5045395186 @default.
- W4320730503 creator A5057295052 @default.
- W4320730503 creator A5088773627 @default.
- W4320730503 creator A5090294487 @default.
- W4320730503 date "2023-03-01" @default.
- W4320730503 modified "2023-10-11" @default.
- W4320730503 title "Highly permeable polyamide-holey graphene oxide composite membrane prepared by pressure spray interface polymerization for desalination" @default.
- W4320730503 cites W1513798492 @default.
- W4320730503 cites W1802871286 @default.
- W4320730503 cites W1973001249 @default.
- W4320730503 cites W2005205293 @default.
- W4320730503 cites W2013060854 @default.
- W4320730503 cites W2042136281 @default.
- W4320730503 cites W2044686892 @default.
- W4320730503 cites W2053982361 @default.
- W4320730503 cites W2064145094 @default.
- W4320730503 cites W2083223858 @default.
- W4320730503 cites W2090538517 @default.
- W4320730503 cites W2168257146 @default.
- W4320730503 cites W2220844832 @default.
- W4320730503 cites W2288852195 @default.
- W4320730503 cites W2398345750 @default.
- W4320730503 cites W2413561399 @default.
- W4320730503 cites W2505688717 @default.
- W4320730503 cites W2520416084 @default.
- W4320730503 cites W2531846022 @default.
- W4320730503 cites W2537424594 @default.
- W4320730503 cites W2564604623 @default.
- W4320730503 cites W2588464529 @default.
- W4320730503 cites W2613748579 @default.
- W4320730503 cites W2615278136 @default.
- W4320730503 cites W2617788239 @default.
- W4320730503 cites W2625153997 @default.
- W4320730503 cites W2752083819 @default.
- W4320730503 cites W2756204387 @default.
- W4320730503 cites W2763930186 @default.
- W4320730503 cites W2765846910 @default.
- W4320730503 cites W2802519988 @default.
- W4320730503 cites W2804890126 @default.
- W4320730503 cites W2807975176 @default.
- W4320730503 cites W2887196117 @default.
- W4320730503 cites W2898497908 @default.
- W4320730503 cites W2899116413 @default.
- W4320730503 cites W2908643112 @default.
- W4320730503 cites W2916645356 @default.
- W4320730503 cites W2939107936 @default.
- W4320730503 cites W2945152818 @default.
- W4320730503 cites W2950027738 @default.
- W4320730503 cites W2995231900 @default.
- W4320730503 cites W3003695094 @default.
- W4320730503 cites W3008686397 @default.
- W4320730503 cites W3202475250 @default.
- W4320730503 cites W4213172400 @default.
- W4320730503 cites W4283079630 @default.
- W4320730503 cites W4310896205 @default.
- W4320730503 cites W4312112421 @default.
- W4320730503 doi "https://doi.org/10.1016/j.carbon.2023.02.041" @default.
- W4320730503 hasPublicationYear "2023" @default.
- W4320730503 type Work @default.
- W4320730503 citedByCount "4" @default.
- W4320730503 countsByYear W43207305032023 @default.
- W4320730503 crossrefType "journal-article" @default.
- W4320730503 hasAuthorship W4320730503A5003832506 @default.
- W4320730503 hasAuthorship W4320730503A5025851882 @default.
- W4320730503 hasAuthorship W4320730503A5025891050 @default.
- W4320730503 hasAuthorship W4320730503A5045395186 @default.
- W4320730503 hasAuthorship W4320730503A5057295052 @default.
- W4320730503 hasAuthorship W4320730503A5088773627 @default.
- W4320730503 hasAuthorship W4320730503A5090294487 @default.
- W4320730503 hasConcept C104779481 @default.
- W4320730503 hasConcept C127413603 @default.
- W4320730503 hasConcept C130797344 @default.
- W4320730503 hasConcept C159985019 @default.
- W4320730503 hasConcept C166940927 @default.
- W4320730503 hasConcept C171250308 @default.
- W4320730503 hasConcept C185592680 @default.
- W4320730503 hasConcept C188027245 @default.
- W4320730503 hasConcept C190399342 @default.
- W4320730503 hasConcept C191897082 @default.
- W4320730503 hasConcept C192562407 @default.
- W4320730503 hasConcept C21535326 @default.
- W4320730503 hasConcept C2776870568 @default.
- W4320730503 hasConcept C2779851234 @default.
- W4320730503 hasConcept C2780861853 @default.
- W4320730503 hasConcept C30080830 @default.
- W4320730503 hasConcept C41625074 @default.
- W4320730503 hasConcept C42360764 @default.
- W4320730503 hasConcept C44228677 @default.
- W4320730503 hasConcept C50670333 @default.
- W4320730503 hasConcept C521977710 @default.
- W4320730503 hasConcept C55493867 @default.
- W4320730503 hasConceptScore W4320730503C104779481 @default.
- W4320730503 hasConceptScore W4320730503C127413603 @default.