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A Novel Bipolar Plate Design for Vanadium Redox Flow Battery Application

机译:新型钒极液流电池双极板设计

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A novel design of bipolar plate (BP) was proposed for vanadium redox flow battery (VFB). The BP was prepared by injecting molten polyethylene into micropores of carbon fibers (CF) via molding method (simplified as MBP), which behaved high conductivity and great mechanical strength due to its special morphologies of conductive network structure uniform distribution made the fibers connecting with each other compared to the BP prepared by extrusion method (simplified as EBP). The electrochemical tests also showed the VFB with the composite MBP behaved better battery performance with higher voltage efficiency which could be attributed to the lower resistance of MBP consisting of conductive CF networks.
机译:提出了一种新颖的双极板(BP)设计用于钒氧化还原液流电池(VFB)。 BP是通过模制方法(简称MBP)将熔融的聚乙烯注射到碳纤维(CF)的微孔中而制得的,由于其特殊的导电网络结构形态均匀分布,使得纤维相互之间的连接而具有较高的导电性和较高的机械强度。与通过挤出法制备的BP(简化为EBP)相比。电化学测试还表明,带有复合MBP的VFB表现出更好的电池性能和更高的电压效率,这可能归因于由导电CF网络组成的MBP的电阻较低。

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