Synthesis and physiochemical performances of PVC-sodium polyacrylate and PVC-sodium polyacrylate-graphite composite polymer membrane

Author:

Hamid Abdul1,Khan Muhammad12,Hussain Fakhar1,Zada Amir3,Li Tiehu2,Alei Dang2,Ali Amjad1

Affiliation:

1. Department of Chemistry , University of Okara Renala Khurd , Okara , Punjab , Pakistan

2. School of Materials Science and Engineering , Northwestern Polytechnical University , Xian , P. R. China

3. Department of Chemistry , Abdul Wali Khan University Mardan , Mardan , 23200, Pakistan

Abstract

Abstract Three types (type-A, B, and C) of composite polymeric membranes (CPMs) based on poly vinyl chloride (PVC) and different fillers (sodium polyacrylate and sodium polyacrylate-graphite) soaked in water and 0.5 N HCl were prepared using solvent casting method. Different physicochemical parameters such as microscopic surface study, water uptake, perpendicular swelling, density, porosity (ε), ion exchange capacity, and conductivity of the as the prepared CPMs were evaluated. Interestingly, type-A CPM cast with filler-A has greater values of the above parameters except density and ionic conductivity than those of type-B and C CPMs. The water uptake of type-A, B and C composite membranes was respectively in the range of 220.42–534.70, 59.64–41.65, and 15.94–2.62%. Ion exchange capacity of type-A, B and C CPMs was in the range of 3.669 × 107–2.156 × 107, 5.948 × 107–1.258 × 107, and 1.454 × 107–1.201 × 107 m.eq.g−1 respectively while the conductivity order was type-A < B < C. These types of CPMs may be helpful in many applications including proton exchange membranes, fuel cell like devices, as sensors for different metals, gas purification, water treatment, and battery separators.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

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