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Preparation and Electrochemical Characterization of Organic–Inorganic Hybrid Poly(Vinylidene Fluoride)-SiO2 Cation-Exchange Membranes by the Sol-Gel Method Using 3-Mercapto-Propyl-Triethoxyl-Silane

机译:3-巯基丙基三乙氧基硅烷的Sol-Gel法制备有机-无机杂化聚偏二氟乙烯-SiO2阳离子交换膜及电化学表征

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摘要

A new synthesis method for organic–inorganic hybrid Poly(vinylidene fluoride)-SiO cation-change membranes (CEMs) is proposed. This method involves mixing tetraethyl orthosilicate (TEOS) and 3-mercapto-propyl-triethoxy-silane (MPTES) into a polyvinylidene fluoride (PVDF) sol-gel solution. The resulting slurry was used to prepare films, which were immersed in 0.01 M HCl, which caused hydrolysis and polycondensation between the MPTES and TEOS. The resulting Si-O-Si polymers chains intertwined and/or penetrated the PVDF skeleton, significantly improving the mechanical strength of the resulting hybrid PVDF-SiO CEMs. The -SH functional groups of MPTES oxidized to-SO H, which contributed to the excellent permeability of these CEMs. The surface morphology, hybrid structure, oxidative stability, and physicochemical properties (IEC, water uptake, membrane resistance, membrane potential, transport number, and selective permittivity) of the CEMs obtained in this work were characterized using scanning electron microscope and Fourier transform infrared spectroscopy, as well as electrochemical testing. Tests to analyze the oxidative stability, water uptake, membrane potential, and selective permeability were also performed. Our organic–inorganic hybrid PVDF-SiO CEMs demonstrated higher oxidative stability and lower resistance than commercial Ionsep-HC-C membranes with a hydrocarbon structure. Thus, the synthesis method described in this work is very promising for the production of very efficient CEMs. In addition, the physical and electrochemical properties of the PVDF-SiO CEMs are comparable to the Ionsep-HC-C membranes. The electrolysis of the concentrated CoCl solution performed using PVDF-SiO -6 and Ionsep-HC-C CEMs showed that at the same current density, Co production, and current efficiency of the PVDF-SiO -6 CEM membrane were slightly higher than those obtained using the Ionsep-HC-C membrane. Therefore, our novel membrane might be suitable for the recovery of cobalt from concentrated CoCl solutions.
机译:提出了一种新的有机-无机杂化聚偏二氟乙烯-SiO阳离子变化膜的合成方法。该方法涉及将原硅酸四乙酯(TEOS)和3-巯基丙基三乙氧基硅烷(MPTES)混合到聚偏二氟乙烯(PVDF)溶胶-凝胶溶液中。所得的浆料用于制备膜,将其浸入0.01M HCl中,这引起MPTES和TEOS之间的水解和缩聚。所得的Si-O-Si聚合物链缠绕和/或穿透PVDF骨架,从而显着提高了所得杂化PVDF-SiO CEM的机械强度。 MPTES的-SH官能团被氧化为-SO H,这有助于这些CEM的出色渗透性。使用扫描电子显微镜和傅里叶变换红外光谱对这项工作中获得的CEM的表面形态,杂化结构,氧化稳定性和理化性质(IEC,吸水率,膜电阻,膜电势,转运数和选择性介电常数)进行了表征。以及电化学测试。还进行了分析氧化稳定性,吸水率,膜电位和选择性渗透性的测试。与具有烃结构的商业Ionsep-HC-C膜相比,我们的有机-无机杂化PVDF-SiO CEM具有更高的氧化稳定性和更低的电阻。因此,这项工作中描述的合成方法对于生产非常有效的CEM非常有希望。此外,PVDF-SiO CEM的物理和电化学性质与Ionsep-HC-C膜相当。使用PVDF-SiO -6和Ionsep-HC-C CEM对浓CoCl溶液进行电解显示,在相同的电流密度下,PVDF-SiO -6 CEM膜的Co生成和电流效率略高于获得的CoCl溶液。使用Ionsep-HC-C膜。因此,我们的新型膜可能适用于从浓缩CoCl溶液中回收钴。

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