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Effect of Elevated Temperature Annealing on Nafion/SiO2 Composite Membranes for the All-Vanadium Redox Flow Battery

机译:高温退火对全钒氧化还原液流电池用Nafion / SiO2复合膜的影响

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摘要

Conducting Nafion/SiO2 composite membranes were successfully prepared using a simple electrostatic self-assembly method, followed by annealing at elevated temperatures of 240, 270, and 300 °C. Membrane performance was then investigated in vanadium redox flow batteries (VRB). These annealed composite membranes demonstrated lower vanadium permeability and a better selectivity coefficient than pure Nafion membranes. The annealing temperature of 270 °C created the highest proton conductivity in the Nafion/SiO2 composite membranes. The microstructures of these membranes were analyzed using transmission electron microscopy, small-angle X-ray scattering, and positron annihilation lifetime spectroscopy. This study revealed that exposure to high temperatures resulted in an increase in the free volumes of the composite membranes, resulting in improved mechanical and chemical behavior, with the single cell system containing composite membranes performing better than systems containing pure Nafion membranes.
机译:使用简单的静电自组装方法成功地制备了导电Nafion / SiO2复合膜,然后在240、270和300°C的高温下进行退火。然后研究了钒氧化还原液流电池(VRB)的膜性能。这些退火的复合膜比纯Nafion膜具有更低的钒渗透性和更好的选择性系数。 270°C的退火温度在Nafion / SiO2复合膜中产生了最高的质子传导率。使用透射电子显微镜,小角X射线散射和正电子an没寿命光谱分析了这些膜的微观结构。这项研究表明,暴露于高温下会导致复合膜的自由体积增加,从而改善机械和化学行为,其中包含复合膜的单细胞系统的性能要优于包含纯Nafion膜的系统。

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