Synthesis and characterization of novel water soluble derivative of Chitosan as an additive for polysulfone ultrafiltration membrane

A novel water soluble Chitosan derivative N-propylphosphonic Chitosan (NPPCS) having a terminal phosphonic acid group was synthesized by reacting Chitosan with Hydroxybenzotriazole (HOBt) and propylphosphonic anhydride (T3P)® via one pot reaction. The novel derivative was characterized by 1H NMR, At...

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Veröffentlicht in:Journal of membrane science 2013-08, Vol.440, p.140-147
Hauptverfasser: Kumar, Rajesha, Isloor, Arun M., Ismail, A.F., Matsuura, T.
Format: Artikel
Sprache:eng
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Zusammenfassung:A novel water soluble Chitosan derivative N-propylphosphonic Chitosan (NPPCS) having a terminal phosphonic acid group was synthesized by reacting Chitosan with Hydroxybenzotriazole (HOBt) and propylphosphonic anhydride (T3P)® via one pot reaction. The novel derivative was characterized by 1H NMR, Attenuated Total Reflectance Infra Red (ATR-IR) spectroscopy and XRD. Due to insolubility of NPPCS in organic solvents, a new process was demonstrated for blending of NPPCS with Polysulfone. The proper blending of NPPCS with Polysulfone was confirmed by ATR-IR spectroscopy. The improved hydrophilicity of PSf/NPPCS membranes was confirmed by contact angle measurement. The permeation studies showed increased flux of PSf/NPPCS membranes as compared to the pristine Polysulfone membrane. The antifouling property of PSf/NPPCS membrane was determined by Bovine Serum Albumin (BSA) protein rejection studies. The membranes showed the enhanced antifouling property as compared to pristine Polysulfone membranes with a maximum of 74% flux recovery ratio (FRR) value. [Display omitted] •Prepared a novel water soluble derivative of Chitosan NPPCS.•NPPCS used as additive to PSf membrane.•NPPCS resulted in a highly porous membrane structure.•PSf/NPPCS membranes showed enhanced hyrophilicity, antifouling and permeation properties.
ISSN:0376-7388
1873-3123
DOI:10.1016/j.memsci.2013.03.013