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Fabrication of electrospun sulfonated poly(ether sulfone) nanofibers with amino modified SiO2 nanosphere for optimization of nanochannels in proton exchange membrane

机译:氨基改性SiO2纳米纤维矿纺磺化聚(醚砜)纳米纤维在质子交换膜上优化纳米醚的制造

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摘要

Nanofibers have been widely used for the construction of proton channels in proton exchange membranes (PEMs), and the optimization and control of proton channels have become a focus in this research area. In this work, we design and fabricate optimized and efficient proton transport channels in PEMs by introducing of sulfonated poly (ether sulfone) nanofiber with amino-modified SiO2 protuberance structures. The protuberance structures improve the strong interactions between the functional groups of nanofibers and matrix, resulting in an increased density of proton-conducting sites and improvement in membrane properties. Notably, Nafion/SPES/SiO2-3% possesses a low methanol permeability of 7.22 x 10(-7) CM2 S-1 and a high proton conductivity of 0.23 S cm(-1) at 80 degrees C in water. Consequently, the Nafion/SPES/SiO2 membrane demonstrates a maximum power density of 77.22 mW cm(-2) in a direct methanol fuel cell test system, which is 42.34% higher compared to the value of Nafion membrane (54.25 mW cm(-2)). This study successfully explores the preparation route of nanofiber with protuberance structures successfully, and highlights the potential benefits of this novel nanofiber structure in the PEM field.
机译:纳米纤维已广泛用于质子交换膜(PEMS)中的质子通道的构建,而质子通道的优化和控制已成为该研究区域的重点。在这项工作中,我们通过用氨基改性的SiO2突起结构引入磺化聚(醚砜)纳米纤维来设计和制造PEM的优化和高效的质子传输通道。突出结构改善纳米纤维和基质的官能团之间的强相互作用,导致质子导电部位的密度增加,并改善膜性能。值得注意的是,Nafion / SPES / SiO 2-3%具有7.22×10(-7)cm 2 S-1的低甲醇渗透性,并且在水中的80℃下为0.23秒(-1)的高质子电导率。因此,Nafion / SPES / SiO 2膜在直接甲醇燃料电池试验系统中显示出77.22mW cm(-2)的最大功率密度,与Nafion膜的值相比,比Nafion膜的值更高(54.25mm cm(-2 )))。该研究成功地探讨了具有突起结构的纳米纤维的制备途径成功,并突出了PEM场中这种新型纳米纤维结构的潜在益处。

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