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Preparation and properties of polypropylene-carbon nanotubes nanocomposites for application in bipolar plates

机译:聚丙烯 - 碳纳米管纳米复合材料在双极板中施用的制备及性能

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Polymer electrolyte membrane fuel cells (PEMFCs) have the potential to play a major role as energy sources for transportation and portable applications because they feature high power density at relatively low operating temperatures. Bipolar plates are a key component of PEMFCs in terms of cost and weight. To date, many different materials for bipolar plates have been investigated and an alternative solution consists in carbon nanotubes (CNTs)-filled polymer nanocomposites which combine the good processability, high corrosion resistance and good mechanical properties of polymers with the excellent electrical and other functional properties of the CNTs. However, a preferential distribution of well dispersed CNTs forming conductive 3D networks is required to successfully exploit their potential. In this work, polypropylene (PP)-multi-walled CNTs (MWCNTs) nanocomposites have been prepared by melt-blending using different loadings (1, 2 and 5 wt.%) of MWCNTs and processing conditions. The microstructure and properties of these nanocomposites have been characterized on molded plates of 1.5 mm thickness. The state of dispersion of the MWCNTs in the polymer matrix is investigated by SEM and optical confocal microscopy and the electrical properties of the nanocomposites are measured in order to find the electrical percolation threshold.
机译:聚合物电解质膜燃料电池(PEMFC)有可能作为用于运输和便携式应用的能源的主要作用,因为它们具有相对较低的操作温度的高功率密度。双极板是PEMFC在成本和体重方面的关键组成部分。迄今为止,已经研究了许多用于双极板的不同材料,并且替代溶液在碳纳米管(CNT) - 填充的聚合物纳米复合材料中组成,该聚合物纳米复合材料结合了良好的加工性,高耐腐蚀性和具有优异电气和其他功能性的良好的聚合物的良好机械性能CNT。然而,需要一种优选的分散的CNT形成导电3D网络来成功利用它们的潜力。在这项工作中,通过使用不同载荷(1,2和5wt. %)MWCNT和加工条件,通过熔融混合制备聚丙烯(PP)-Multi壁CNT(MWCNT)纳米复合材料。这些纳米复合材料的微观结构和性质的特征在于厚度为1.5mm的模制板。通过SEM和光学共聚焦显微镜研究MWCNTs在聚合物基质中的分散状态,测量纳米复合材料的电性能以找到电渗透阈值。

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