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Crossover behavior in the hydrogen sensing mechanism for palladium ultrathin films

机译:钯超薄膜氢感测机理中的交叉行为

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Palladium has been extensively studied as a material for hydrogen sensors because of the simplicity of its reversible resistance change when exposed to hydrogen gas. Various palladium films and nanostructures have been used, and different responses have been observed with these diverse morphologies. In some cases, such as with nanowires, the resistance will decrease, whereas in others, such as with thick films, the resistance will increase. Each of these mechanisms has been explored for several palladium structures, but the crossover between them has not been systematically investigated. Here we report on a study aimed at deciphering the nanostructure-property relationships of ultrathin palladium films used as hydrogen gas sensors. The crossover in these films is observed at a thickness of similar to 5 nm. Ramifications for future sensor developments are discussed.
机译:由于钯在暴露于氢气中时可逆的电阻变化的简单性,因此作为氢传感器的材料已被广泛研究。已经使用了各种钯膜和纳米结构,并且对于这些不同的形态观察到了不同的响应。在某些情况下,例如对于纳米线,电阻将减小,而在其他情况下,例如对于厚膜,电阻将增加。已针对几种钯结构探索了每种机制,但尚未系统研究它们之间的交叉。在这里,我们报道了一项旨在破译用作氢气传感器的超薄钯膜的纳米结构-性能关系的研究报告。观察到这些膜的交叉厚度接近5 nm。讨论了未来传感器发展的影响。

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