Protection of FeTi thin films using palladium coatings

J. H. Sanders, B. Tatarchuk
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引用次数: 9

Abstract

The use of FeTi as a hydrogen storage material is hindered by surface decomposition of the alloy when exposed to hydrogen charging gases containing PPM levels of O2/H2O impurities. This study investigates the application of palladium coatings as barrier materials against these impurities in order to increase the effective lifetime of the alloy over numerous charge-discharge cycles. Palladium was chosen because it has excellent hydrogen transport properties and it is impermeable to impurities containing oxygen at the temperatures and pressures of interest. Two 10 nm FeTi thin-film specimens were prepared, one coated with an additional 5 nm Pd overlayer, and both samples exposed to identical annealing and reduction treatments. Conversion electron Mossbauer spectroscopy (CEMS) was used along with other analytical techniques (i.e. XPS and SIMS) to obtain chemical, magnetic and electronic information at the buried and exposed interfaces. CEMS demonstrated that the Pd coating prevented subsurface decomposition of FeTi.
钯涂层对FeTi薄膜的保护
当暴露于含有PPM水平O2/H2O杂质的充氢气体中时,合金的表面分解阻碍了FeTi作为储氢材料的使用。本研究探讨了钯涂层作为阻挡这些杂质的屏障材料的应用,以增加合金在多次充放电循环中的有效寿命。选择钯是因为它具有优异的氢传输性能,并且在所需的温度和压力下,它对含氧杂质是不渗透的。制备了两个10 nm的FeTi薄膜样品,其中一个额外涂有5 nm的Pd覆盖层,两个样品都经过相同的退火和还原处理。转换电子穆斯堡尔谱(CEMS)与其他分析技术(即XPS和SIMS)一起用于获取埋藏和暴露界面的化学,磁性和电子信息。CEMS表明,Pd涂层阻止了FeTi的亚表面分解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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