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Properties of Phosphoric Acid Doped Poly(benzimidazole/sulfone/siloxane/amide)/Sulfonated Polystyrene/Silica Nanoparticle-based Proton Exchange Membranes for Fuel Cells
作者姓名:Ayesha Kausara  ;Muhammad Siddiq
作者单位:[1]Nanosciences and Catalysis Division, National Centre For Physics, Quaid-i-Azam University Campus, Islamabad 44000, Pakistan; [2]Department of Chemistry, Quaid-i-Azam University, Islamabad, Pakistan
摘    要:New siloxane and sulfone containing poly(benzimidazole/sulfone/siloxane/amide)(PBSSA) has been prepared for the formation of hybrid membranes(PBSSA/PS-S/SiNPs) with sulfonated polystyrene(PS-S) and 0.1 wt%-2 wt% silica nanoparticles(SiNPs). Field emission scanning electron micrographs showed good dispersion of filler, formation of dense nanoporous honeycomb like structure and uniform ionic pathway in these hybrids. The porous membrane structure was responsible for the fine water retention capability and higher proton conductivity of the new hybrids. Increasing the amount of nanoparticles from 0.1 wt% to 2 wt% increased the tensile stress of acid doped PBSSA/PS-S/SiNPs nanocomposites from 65.7 MPa to 68.5 MPa. A relationship between nanofiller loading and thermal stability of the membranes was also experientially studied, as the glass transition temperature of phosphoric acid doped PBSSA/PS-S/SiNPs nanocomposites increased from 207 °C to 215 °C. The membranes also had higher ion exchange capacity(IEC) around 2.01 mmol/g to 3.01 mmol/g. The novel membranes with high IEC value achieved high proton conductivity of 1.10-2.34 S/cm in a wide range of humidity values at 80 °C which was higher than that of perfluorinated Nafion 117 membrane(1.1 × 10-1 S/cm) at 80 °C(94% RH). A H2/O2 fuel cell using the PBSSA/PS-S/SiNP 2(IEC 3.01 mmol/g) showed better performance than that of Nafion 117 at 40 °C and 30% RH.

关 键 词:质子交换膜燃料  二氧化硅纳米粒子  磺化聚苯乙烯  磷酸掺杂  电池性能  苯并咪唑  硅氧烷  酰胺

Properties of phosphoric acid doped Poly(benzimidazole/sulfone/siloxane/amide)/Sulfonated Polystyrene/Silica nanoparticle-based proton exchange membranes for fuel cells
Ayesha Kausara,;Muhammad Siddiq.Properties of phosphoric acid doped Poly(benzimidazole/sulfone/siloxane/amide)/Sulfonated Polystyrene/Silica nanoparticle-based proton exchange membranes for fuel cells[J].Chinese Journal of Polymer Science,2014,32(10):1319-1328.
Authors:Ayesha Kausar  Muhammad Siddiq
Institution:1. Nanosciences and Catalysis Division, National Centre For Physics, Quaid-i-Azam University Campus, Islamabad, 44000, Pakistan
2. Department of Chemistry, Quaid-i-Azam University, Islamabad, Pakistan
Abstract:Poly(benzimidazole/sulfone/siloxane/amide) Sulfonated polystyrene Silica nanoparticles Ion exchange capacity Proton conductivity.
Keywords:Poly(benzimidazole/sulfone/siloxane/amide)  Sulfonated polystyrene  Silica nanoparticles  Ion exchange capacity  Proton conductivity  
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