Development of novel proton exchange membranes based on cross-linked polyvinyl alcohol (PVA)/5-sulfosalicylic acid (SSCA) for fuel cell applications

被引:4
作者
Elerian, Ahmed F. [1 ]
Mohamed, AbdAllah A. [1 ]
Elnaggar, Elsayed M. [1 ]
Abu-Saied, M. A. [2 ]
机构
[1] Al Azhar Univ, Fac Sci, Dept Chem, Cairo 11884, Egypt
[2] Adv Technol & New Mat Res Inst ATNMRI, Polymer Mat Res Dept, City Sci Res & Technol Applicat SRTA City, New Borg El Arab City 21934, Alexandria, Egypt
关键词
Polymer membranes; PVA; Ionic conductivity; Chemical cross-linking; 5-Sulfosalicylic acid (SSCA); Ion-exchange capacity; Methanol permeability; Proton-exchange membrane (PEM); METHANOL PERMEABILITY; NANOCOMPOSITE MEMBRANE; IONIC-CONDUCTIVITY; ELECTROLYTE; LINKING; NANOPARTICLES; RELEASE; DMFC; PERFORMANCE;
D O I
10.1007/s42452-024-05940-z
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The proton-conducting and methanol permeation behaviors of polymeric electrolyte membranes (PEMs), as well as the expensive nature of direct methanol fuel cell (DMFC) components, pose major concerns in DMFC performance and commercialization. As a result, this research aimed to develop low-cost polyelectrolyte membranes based on cross-linked poly(vinyl alcohol)/5-sulfosalicylic acid dehydrate (PVA/SSCA) composite. Chemical cross-linkers and modifiers offer the essential chemical and mechanical stability of the developed membranes for usage as polyelectrolyte membranes (PEMs). The manufactured composite proton exchange membranes provide several benefits, including significant thermal, chemical, and mechanical stability. The results revealed that extending the SSCA molar concentration increased IEC outcomes of the synthesized membranes, reaching an elevated level of (3.31 meq g-1) compared to (0.91 meq g-1) for the Nafion 117 membrane. The proton conductivity of a composite membrane (102 mu m thick) measured by impedance spectroscopy was relatively (0.078 S cm-1) and found comparable to other PVA-based composite membranes reported in the literature. Other key parameters, such as methanol permeability, were measured for constructed composite proton exchange membranes (2.52 x 10-7 cm2 s-1), which were much lower than Nafion 117 (3.39 x 10-6 cm2 s-1). The Fourier transform infrared (FT-IR), Raman scattering spectroscopy, scanning electron microscopy (SEM), energy-dispersive X-ray (EDX) spectroscopy, elemental analysis, and thermal gravimetric analysis (TGA) were among the techniques used to characterize the synthesized membranes. These characterizations confirm the structural interaction between the membrane components' crystalline nature, and no signs of phase separation or cracks were found; surface morphology and good membrane homogeneity, elemental analysis, and the membranes' thermal stability (up to 290 degrees C). The membranes were also mechanically characterized using a universal testing machine (UTM), which revealed good mechanical stability. The findings demonstrate that a low-cost proton exchange membrane could potentially be synthesized for DMFC applications. Highly conductive cross-linked polyvinyl alcohol/5-Salfosalycalic acid (PVA/SSCA) polyelectrolytic membranes were synthesized. Synthetic membranes provide significant thermal stability, limited methanol permeability, and good proton transport characteristics. Incorporating chemical cross-linkers into polymer matrix morphology improves water resistance and tensile strength.
引用
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页数:25
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