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首页> 外文期刊>Kinetics and catalysis >The Synthesis and Study of the Physicochemical and Catalytic Properties of Composites with the Sulfated Perfluoropolymer/Carbon NanoFiber Composition
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The Synthesis and Study of the Physicochemical and Catalytic Properties of Composites with the Sulfated Perfluoropolymer/Carbon NanoFiber Composition

机译:用硫酸化全氟聚合物/碳纳米纤维组合物的复合材料的物理化学和催化性能的合成及研究

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摘要

Composites with the sulfated perfluoropolymer (SFP) (Nafion, etc.)-mesoporous support composition (SFP/support)-are promising solid acid catalysts with strong acid sites and very stable sulfo groups towards leaching processes. The effect of the SFP on the carbon nanofiber (CNF) (SFP/CNF) composite synthesis method, as well as the precursors of the acid phase, on the key acid catalyst characteristics (specific surface area and concentration and accessibility of the acid sites) is studied. The possibility of the direct composite synthesis from SO2F-polymer latexes obtained as a result of the water emulsion SFP synthesis (without the intermediate stages of isolating the SO3H form) is shown. The acid phase precursor types which are acceptable for the SFP/CNF composite synthesis (the equivalent polymer weight > 580 g/mol) are selected. The effect of the amount of the supported polymer on the total specific surface area and concentration and accessibility of the composite acid site is investigated. The structure of the synthesized composites is studied (by TEM, SAXS, and isopropanol TPD), and their catalytic activity in the test acetic acid esterification reaction is compared to the catalytic activity of pure polymer samples and acetic acid. It is found that the synthesized SFP/CNF samples outperform commercial SFP/SiO2 samples (SAC, DuPont), as well as the SFP/CNF samples prepared using polymer solutions in the SO3H form, in terms of the catalytic characteristics.
机译:用硫酸化全氟聚合物(SFP)(NAFION等) - 中孔支撑组合物(SFP /载体)的复合材料 - 具有强酸位点的承诺固体酸催化剂,非常稳定的磺族基团朝向浸出方法。 SFP对碳纳米纤维(CNF)(SFP / CNF)复合合成方法的影响,以及酸相的前体,在键酸催化剂特征上(比表面积和酸性位点的浓度和可达性)研究过。示出了由于水乳液SFP合成而获得的SO2F-聚合物胶乳的直接复合合成的可能性(没有分离SO 3H形式的中间阶段)。选择SFP / CNF复合合成(等效聚合物重量> 580g / mol)可接受的酸相前体类型。研究了负载聚合物对总比表面积和复合酸部位的浓度和可移性的影响。研究了合成复合材料的结构(通过TEM,萨克斯和异丙醇TPD),并将其在试验乙酸酯化反应中的催化活性与纯聚合物样品和乙酸的催化活性进行比较。发现合成的SFP / CNF样品优于商业SFP / SiO2样品(SAC,DuPont),以及在催化特性方面以SO 3H形式使用聚合物溶液制备的SFP / CNF样品。

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