首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Proton exchange membranes for application in fuel cells: Grafted silica/SPEEK nanocomposite elaboration and characterization
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Proton exchange membranes for application in fuel cells: Grafted silica/SPEEK nanocomposite elaboration and characterization

机译:用于燃料电池的质子交换膜:接枝二氧化硅/ SPEEK纳米复合材料的制备和表征

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Hydrogen technologies and especially fuel cells are key components in the battle to find alternate sources of energy to the highly polluting and economically constraining fossil fuels in an aim to preserve the environment. The present paper shows the synthesis of surface functionalized silica nanoparticles, which are used to prepare grafted silica/SPEEK nanocomposite membranes. The nanoparticles are grafted either with hexadecylsilyl or aminopropyldimethylsilyl moieties or both. The synthesized particles are analyzed using XRD, NMR, TEM, and DLS to collect information on the nature of the particles and the functional groups, on the particle sizes, and on the hydrophilic/hydrophobic character. The composite membranes prepared using the synthesized particles and two SPEEK polymers with sulfonation degrees of 69.4% and 85.0% are characterized for their proton conductivity and water uptake properties. The corresponding curves are very similar for the composites prepared with both polymers and the nanoparticles bearing the two functional groups. The composites prepared with the nanoparticles bearing solely the aminopropyldimethylsilyl moiety exhibit lower conductivity and water uptake, possibly due to higher interaction of the polymer sulfonic acid sites with the amine groups. The composites prepared with the nanoparticles bearing solely the hexadecylsilyl moiety were not further investigated because of very high particles segregation. A study of the proton conductivity as a function of temperature was performed on selected membranes and showed that nanocomposites made with nanoparticles bearing both functional moieties have a higher conductivity at higher temperatures.
机译:氢技术,尤其是燃料电池,是为保护环境而在高污染和经济上受限的化石燃料中寻找替代能源的斗争中的关键组成部分。本文显示了表面官能化二氧化硅纳米粒子的合成,该纳米粒子用于制备接枝二氧化硅/ SPEEK纳米复合膜。用十六烷基甲硅烷基或氨基丙基二甲基甲硅烷基部分或两者接枝纳米颗粒。使用XRD,NMR,TEM和DLS对合成的颗粒进行分析,以收集有关颗粒性质和官能团,颗粒尺寸以及亲水/疏水特性的信息。使用合成的颗粒和两种磺化度分别为69.4%和85.0%的SPEEK聚合物制备的复合膜的质子传导性和吸水特性得到了表征。对于用聚合物和带有两个官能团的纳米颗粒制备的复合材料,相应的曲线非常相似。用仅带有氨基丙基二甲基甲硅烷基部分的纳米颗粒制备的复合材料表现出较低的电导率和吸水率,这可能是由于聚合物磺酸位与胺基的较高相互作用所致。由于非常高的颗粒偏析,未进一步研究用仅带有十六烷基甲硅烷基部分的纳米颗粒制备的复合材料。在选定的膜上进行了质子电导率随温度变化的研究,结果表明,由同时带有两个功能部分的纳米粒子制成的纳米复合材料在较高温度下具有较高的电导率。

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