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SPEEK-zirconium hydrogen phosphate composite membranes with low methanol permeability prepared by electro-migration and in situ precipitation

机译:电迁移原位沉淀法制备低渗透性SPEEK-磷酸氢锆锆复合膜

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摘要

Sulfonated poly(ether ether ketone)(SPK)-zirconium hydrogen phosphate(ZrP)composite membranes were prepared by electro-driven migration of Zr~(4+)and simultaneous in situ precipitation of ZrP using phosphoric acid under different electrical gradient,in order to avoid loss in its mechanical stability.Degree of sulfonation was estimated from ~1H NMR and ion-exchange capacity study that was found to be 61% and 57%,respectively.In this method Zr~(4+)and HPO_4~(2-)were allowed to diffuse within the pores/channels of the preformed SPK membrane under given electrical gradient and ZrP was precipitated within the membrane matrix.ZrP loading density was measured as a function of applied electrical gradient for a definite reaction time(4 h)and electrolytic environment.Membranes with varied ZrP loading densities were characterized for their thermal and mechanical stabilities,physicochemical and electrochemical properties using thermogravimetric analysis(TGA),dynamic mechanical analysis(DMA),scanning electron microscopy(SEM),water content,proton conductivity and methanol permeability.No loss in thermal and mechanical stability of membranes was observed due to incorporation of inorganic component(ZrP)in the membrane matrix.Although the composite membranes exhibited low proton conductivity in comparison to SPK membrane at room temperature,but the presence of the inorganic particles led to an improvement in high temperature conductivity.Selectivity parameter of these composite membranes was estimated at two temperatures namely 30 and 70 °C,in latter case it was found significantly higher than that for Nafion membrane(0.79 x 10~5 S scm~(-3))under similar experimental conditions.
机译:通过电驱动Zr〜(4+)迁移并同时在不同电梯度下用磷酸原位沉淀ZrP,制备了磺化聚醚醚酮(SPK)-磷酸氢锆(ZrP)复合膜。根据〜1H NMR和离子交换容量研究得出的磺化度分别为61%和57%.Zr〜(4+)和HPO_4〜(2在给定的电梯度下,使-)扩散到预制SPK膜的孔/通道中,并在膜基质中沉淀ZrP。在一定的反应时间内(4 h)测量ZrP的负载密度与施加的电梯度的关系。使用热重分析(TGA),动态力学分析(DMA),斯堪的纳维亚表征ZrP负载密度不同的膜的热稳定性和机械稳定性,理化和电化学性质电镜(SEM),水含量,质子传导率和甲醇渗透性。在膜基质中掺入无机组分(ZrP)不会导致膜的热和机械稳定性损失。与室温下的SPK膜相比,但是无机颗粒的存在导致了高温导电性的改善。在30和70°C这两个温度下估算了这些复合膜的选择性参数,在后者的情况下发现明显更高在类似的实验条件下,比Nafion膜(0.79 x 10〜5 S scm〜(-3))要好。

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