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AuthorPandey, Ravi P.
AuthorRasheed, P. Abdul
AuthorGomez, Tricia
AuthorAzam, Reem S.
AuthorMahmoud, Khaled A.
Available date2025-03-20T08:10:20Z
Publication Date2020
Publication NameJournal of Membrane Science
ResourceScopus
Identifierhttp://dx.doi.org/10.1016/j.memsci.2020.118139
ISSN3767388
URIhttp://hdl.handle.net/10576/63817
AbstractA new fouling-resistant mixed-matrix nanofiltration membrane based on a covalently cross-linked Ti3C2TX (MXene)/cellulose acetate (MXene@CA) composite was fabricated by phase inversion followed by formaldehyde cross-linking. The physicochemical properties of the prepared MXene@CA composite membranes were studied by field emission scanning electron microscopy (FESEM), energy dispersive spectroscopy (EDS), X-ray diffraction (XRD), and water contact angle techniques. The performance of the prepared membranes was evaluated with respect to the water flux, bacterial growth inhibition, and rejection properties. The 10%MXene@CA (10:90 wt % of MXene:CA) composite membrane shows high pure water flux of ~256.85 L m−2 h−1 bar−1, 123.28% water uptake, and 69.7% porosity. The 10%MXene@CA membrane, exhibited more than 92% and 98% rejection of rhodamine B (RhB) and methyl green (MG), respectively. Furthermore, 10%MXene@CA membrane exhibited more than 98% and 96% growth inhibition for E. coli and B. subtilis, respectively. Also, the optimal membrane showed a significantly improved hydrophilicity (water contact angle = 60.8°), which has favored good antifouling properties. The reported nanofiltration membrane, especially 10%MXene@CA, can be suggested for water purification and biomedical applications.
SponsorFunding text 1: RP, and PAR acknowledge the financial support of Qatar National Research Fund (A member of Qatar Foundation) through the National Priorities Research Program (NPRP) grants (# 9-254-2-120), and (#8-286-2-118). The authors are thankful to A. R. Shetty, A. Samara, M. Pasha, and M. Helal at the Core lab of QEERI/HBKU, Qatar, for XRD, water contact angle, and SEM analysis and K. A. Jabbar, QEERI for the support with bactericidal studies.; Funding text 2: RP, and PAR acknowledge the financial support of Qatar National Research Fund (A member of Qatar Foundation ) through the National Priorities Research Program (NPRP) grants (# 9-254-2-120 ), and (# 8-286-2-118 ). The authors are thankful to A. R. Shetty, A. Samara, M. Pasha, and M. Helal at the Core lab of QEERI/HBKU, Qatar, for XRD, water contact angle, and SEM analysis and K. A. Jabbar, QEERI for the support with bactericidal studies.
Languageen
PublisherElsevier
SubjectAntifouling
Cellulose acetate
Mixed-matrix
Nanofiltration membrane
Ti3C2TX Mxene
TitleA fouling-resistant mixed-matrix nanofiltration membrane based on covalently cross-linked Ti3C2TX (MXene)/cellulose acetate
TypeArticle
Volume Number607
dc.accessType Open Access


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