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An electrochemical investigation of sintered thick metal hydride electrodes for oxygen-metal hydride semi-fuel cell applications

机译:氧-金属氢化物半燃料电池应用中厚金属氢化物烧结电极的电化学研究

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摘要

Based on a conventional pasting method, a sintering process was applied to fabricate thick metal hydride electrodes for oxygen–metal hydride semi-fuel cell. It was found that, after sintering, the activation and the high-rate dischargeability of the electrodes are greatly improved. The sintering parameters were optimized by measuring the electrochemical properties of the metal hydride electrode sintered in the temperature range 650–900 °C for 10–60 min under mixed argon and hydrogen gases. It was found that to make a thick metal hydride electrode, the use of perforated copper foil as a current collector is better than using perforated nickel strip and copper mesh. A new type of structure is designed for the thick metal hydride electrode, that is, by folding the perforated foil that had been prepasted with active materials into a sandwich structure. This fold-type sandwich electrode was further clamped and held together by copper mesh.
机译:在传统的粘贴方法的基础上,采用烧结工艺来制造用于氧-金属氢化物半燃料电池的厚金属氢化物电极。已经发现,在烧结之后,电极的活化和高速率放电能力得到了极大的改善。通过测量在氩气和氢气混合气氛下在650–900°C的温度下烧结10–60 min的金属氢化物电极的电化学性能,可以优化烧结参数。发现制造厚的金属氢化物电极时,使用穿孔的铜箔作为集电器比使用穿孔的镍带和铜网更好。为厚金属氢化物电极设计了一种新型结构,即将预先填充有活性材料的穿孔箔折叠成三明治结构。将该折叠型夹心电极进一步用铜网夹持并保持在一起。

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