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The role of silver nanoparticles on mixed matrix Ag/cellulose acetate asymmetric membranes
Author(s) -
Sonawane Shirish H.,
Terrien Antonine,
Figueiredo Ana Sofia,
Clara Gonçalves M.,
De Pinho Maria Norberta
Publication year - 2017
Publication title -
polymer composites
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.577
H-Index - 82
eISSN - 1548-0569
pISSN - 0272-8397
DOI - 10.1002/pc.23557
Subject(s) - membrane , cellulose acetate , formamide , materials science , cellulose , silver nanoparticle , chemical engineering , nanofiltration , polymer chemistry , acetone , nanoparticle , polymer , ultrafiltration (renal) , nuclear chemistry , composite material , chromatography , organic chemistry , chemistry , nanotechnology , biochemistry , engineering
Mixed matrix asymmetric membranes were prepared by the addition of silver nanoparticles to cellulose acetate/acetone/formamide casting solutions with ratios acetone/formamide varying from 1.44 to 2.77 to prepare ultrafiltration/nanofiltration membranes covering a wide range of hydraulic permeabilities. Binding of the silver nanoparticles to the polymer matrix is revealed through comparison of the FTIR spectra of the cellulose acetate and the Ag/cellulose acetate membranes. In the later, there is a decrease of the ratio between the bands intensities at 2,000–2,500 cm −1 . Membrane surface charge of the mixed matrix membranes varies with the pore size and pH, and when compared with cellulose acetate membranes there is a decrease of the negative surface charge densities. The silver nanoparticles in all mixed matrix membranes results in an enhancement of the hydraulic permeabilities, ranging from 10.8 kg m −2 h −1 bar −1 to 67.1 kg m −2 h −1 bar −1 . POLYM. COMPOS., 38:32–39, 2017. © 2015 Society of Plastics Engineers

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