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Chitosan/silica coated carbon nanotubes composite proton exchange membranes for fuel cell applications
Hai Liu1, Chunli Gong1, Jie Wang2
1Faculty of Chemistry and Material Science, Hubei Engineering University, Xiaogan, Hubei 432000, China; Hubei Co-Innovation Center for Utilization of Biomass Waste, Hubei Engineering University, Xiaogan, Hubei 432000, China.
Abstract:
Silica-coated carbon nanotubes (SCNTs), which were obtained by a simple sol-gel method, were utilized in preparation of chitosan/SCNTs (CS/SCNTs) composite membranes. The thermal and oxidative stability, morphology, mechanical properties, water uptake and proton conductivity of CS/SCNTs composite membranes were investigated. The insulated and hydrophilic silica layer coated on CNTs eliminates the risk of electronic short-circuiting and enhances the interaction between SCNTs and chitosan to ensure the homogenous dispersion of SCNTs, although the water uptake of CS/SCNTs membranes is reduced owing to the decrease of the effective number of the amino functional groups of chitosan. The CS/SCNTs composite membranes are superior to the pure CS membrane in thermal and oxidative stability, mechanical properties and proton conductivity. The results of this study suggest that CS/SCNTs composite membranes exhibit promising potential for practical application in proton exchange membranes.

