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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Functionalized poly(vinylidene fluoride-co-hexafluoro propylene) membrane for fuel cell
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Functionalized poly(vinylidene fluoride-co-hexafluoro propylene) membrane for fuel cell

机译:用于燃料电池的官能化聚(偏二氟乙烯 - 共六氟丙烯)膜

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摘要

Functionalization of poly(vinylidene fluoride-co-hexafluoro propylene) (HFP) is made to prepared membrane for its application in fuel cell. The sulphonation of HFP membrane is carried out under control condition to maintain its stiffness and toughness of the membrane. The evidence of functionalization (sulphonation) is confirmed through different spectroscopic techniques such as NMR, FTIR, EDS mapping and UV-visible measurement and the degree of sulphonation is calculated from the integral peak area. The structural change from the usually crystallized alpha-phase to piezoelectric gamma-phase in functionalized membrane is established through XRD studies. Mechanical and thermal stabilities of the membrane are established through universal testing machine and thermogravimetric measurements. Suitability of proton exchange membrane has been verified through their high water uptake (12%), low fuel permeability (4.43 x 10(-7) cm(2)s(-1)) and thermal stability (up to 200 degrees C). The proton conductivity is found to be high in functionalized membrane while its low fuel permeability and high temperature stability is very good as compared to standard Nafion membrane. Efficiency of the membrane is reported in the form of selective parameter (ratio of conductivity and methanol permeability) of value 0.78 x 10(5) S cm(-3).s for functionalized HFP against the value of 0.81 x 10(5) S cm(-3).s for standard Nafion 117. Moderately high open circuit voltage (0.63 V) and power density of 48.34 mW/cm(2) is reported indicating very good performance of the overall membrane for direct methanol fuel cell. Therefore, direct functionalization of a polymer is a better approach for the preparation of fuel cell membrane.
机译:将聚(氟乙烯 - 共六氟氯丙烯)(HFP)的官能化用于制备膜的制备膜,其在燃料电池中的应用。 HFP膜的磺化在控制条件下进行,以保持其膜的刚度和韧性。通过不同的光谱技术证实了官能化(磺化)的证据,例如NMR,FTIR,EDS映射和UV可见测量,并且从整体峰面积计算磺化程度。通过XRD研究建立了通过官能化膜中通常结晶的α相对压电伽马相的结构变化。膜的机械和热稳定性通过通用试验机和热重测量来建立。通过其高水吸收(12%),低燃料渗透率(4.43×10(-7)cm(2)S(2)S(-1))和热稳定性(高达200℃),已经验证了质子交换膜的适用性。在官能化膜中发现质子电导率高,而与标准的Nafion膜相比,其低燃料渗透性和高温稳定性非常好。膜的效率以选择性参数(电导率和甲醇渗透率)的形式报告,其值为0.78×10(5)厘米(-3)。用于官能化HFP,值为0.81×10(5)秒CM(-3)。标准Nafion 117.对于48.34mW / cm(2)的中度高开关电压(0.63 V)和功率密度,表明直接甲醇燃料电池的整体膜的性能非常好。因此,聚合物的直接官能化是制备燃料电池膜的更好方法。

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