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High surface area, low weight composite nickel fiber electrodes

机译:高表面积,低重量的复合镍纤维电极

摘要

The energy density and power density of light weight aerospace batteries utilizing the nickel oxide electrode are often limited by the microstructures of both the collector and the resulting active deposit in/on the collector. Heretofore, these two microstructures were intimately linked to one another by the materials used to prepare the collector grid as well as the methods and conditions used to deposit the active material. Significant weight and performance advantages were demonstrated by Britton and Reid at NASA-LeRC using FIBREX nickel mats of ca. 28-32 microns diameter. Work in our laboratory investigated the potential performance advantages offered by nickel fiber composite electrodes containing a mixture of fibers as small as 2 microns diameter (Available from Memtec America Corporation). These electrode collectors possess in excess of an order of magnitude more surface area per gram of collector than FIBREX nickel. The increase in surface area of the collector roughly translates into an order of magnitude thinner layer of active material. Performance data and advantages of these thin layer structures are presented. Attributes and limitations of their electrode microstructure to independently control void volume, pore structure of the Ni(OH)2 deposition, and resulting electrical properties are discussed.
机译:利用氧化镍电极的轻型航空电池的能量密度和功率密度通常受到集电器和集电器内/集电器上的活性沉积物两者的微观结构的限制。迄今为止,这两个微结构通过用于制备集电栅的材料以及用于沉积活性材料的方法和条件彼此紧密地连接在一起。 Britton和Reid在NASA-LeRC上使用ca.的FIBREX镍垫证明了显着的重量和性能优势。直径为28-32微米。我们实验室的工作研究了镍纤维复合材料电极的潜在性能优势,该电极包含直径小至2微米的纤维混合物(可从Memtec America Corporation获得)。这些电极集电器的每克集电器表面积比FIBREX镍多出一个数量级。集电器表面积的增加大致转化为活性材料的较薄层的数量级。介绍了这些薄层结构的性能数据和优势。讨论了电极微结构的属性和局限性,以独立控制空隙体积,Ni(OH)2沉积的孔结构以及所得的电性能。

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