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Composite Membranes of Sulfonated Poly(ether ether ketone) with Active Carbon Composite Preparation and Investigation of their Properties for Potential Application for CO2 Electrochemical Reduction

机译:磺化聚(醚醚酮)复合膜,具有活性炭复合制备及其性能研究,用于CO2电化学减少的潜在应用

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In this study, synthesis of sulfonated poly(ether ether ketone) (SPEEK) was performed using sulfonation method with concentrated sulfuric acid. Polymer with three degrees of sulfonation was obtained: 0.87; 0.82 and 0.74. Composite membranes were synthesized with an activated carbon. Ultrasonication method was used in order to achieve homogeneity of distribution of the additive in polymer solution and then in polymer membranes. Membranes with various content of the additive were made: 0; 0.15; 0.3; 0.5; 0.6; 0.8; 1.0; 2.0 and 3.0?%. Swelling degree, water uptake, proton conductivity, isoelectric point, thermal properties and surface morphology of the membranes were analyzed. Proton conductivity was determined using impedance analysis with two electrode system and through-plane configuration. Two methods were used: differential and single membrane method. Differential method is proposed to have significant advantage as it reduces contact resistance, which otherwise is difficult to control and evaluate. Surface zeta potential of membrane surface was investigated, and membranes have shown variation of the potential. Isoelectric point was determined for the membranes with DS 0.82 and carbon content 0?% and 0.5?%, and it was found to be at pH?4. Water uptake and swelling degree of the membranes was studied, and active carbon content was found to not have major influence on those properties, but higher content of sulfonic groups leads to increased water uptake and swelling degree. Thermogravimetric analysis showed slightly better thermal properties of membranes with the additive, compared to the blank membranes, which can be related to differences in the water uptake. Surface of the membrane was investigated using scanning electron microscopy, and no considerable defects were observed.
机译:在该研究中,使用浓硫酸的磺化法进行磺化聚(醚醚酮)(Speek)的合成。获得具有三度磺化的聚合物:0.87; 0.82和0.74。用活性炭合成复合膜。使用超声处理方法,以实现聚合物溶液中添加剂的分布均匀性,然后在聚合物膜中实现均匀性。制造具有各种添加剂含量的膜:0; 0.15; 0.3; 0.5; 0.6; 0.8; 1.0; 2.0和3.0?%。分析了膨胀度,水吸收,质子电导率,等电点,热性质和膜的热性质和表面形态。使用具有两个电极系统和穿过平面配置的阻抗分析来确定质子电导率。使用了两种方法:差分和单膜法。提出差分方法具有显着的优势,因为它降低了接触电阻,否则难以控制和评估。研究了膜表面的表面Zeta电位,并且膜显示了电位的变化。确定具有DS 0.82和碳含量0〜0.5μm的膜的等电点,发现它是pH≤4。研究了膜的水吸收和溶胀程度,发现活性炭含量对这些性质产生重大影响,但磺酸的含量较高导致水吸收和溶胀度增加。与空白膜相比,热重分析显示膜与添加剂略微更好的热性质,与坯料相比,与坯料相比,这可能与水吸收的差异有关。使用扫描电子显微镜研究膜的表面,并且没有观察到具有相当大的缺陷。

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