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Effect of Composition and Microstructure of Pd-Cu-Si Metallic Glassy Alloy Thin Films on Hydrogen Absorbing Properties

机译:Pd-Cu-Si金属玻璃态合金薄膜的组成和微观结构对吸氢性能的影响

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摘要

Thin films of Pd-Cu-Si metallic glassy alloys for a hydrogen sensor were fabricated by a sputtering method. In order to find out the effect of the composition and the microstructure of them on the hydrogen absorbing property (the H2 response), the structural parameters based on the short-range order (SRO) were measured. Additionally, the change of the structural parameters with hydrogen absorption was measured, and the correlations of the change with the H2 response and the hydrogen induced linear expansion coefficient (LEC) were examined. The H2 response decreased with increases in Si content and the structural parameters. These results can be explained by the positive effects of Si content and the structural parameters on the formation of a trigonal prism which is a structural unit of Pd-based amorphous alloys, and by the negative effect of the trigonal prism on absorbing hydrogen. From the observation of the elongation of the Pd-Pd atomic distance with absorbing hydrogen, H atoms are supposed to occupy the space between Pd atoms. The amount of the change in the Pd-Pd atomic distance showed the positive correlations with the H2 response and the LEC.
机译:通过溅射法制备了用于氢传感器的Pd-Cu-Si金属玻璃合金薄膜。为了找出组成和它们的微观结构对氢吸收性能(H 2响应)的影响,测量了基于短程顺序(SRO)的结构参数。另外,测量了结构参数随氢吸收的变化,并且研究了该变化与氢响应和氢诱导的线性膨胀系数(LEC)的相关性。 H 2响应随着Si含量和结构参数的增加而降低。这些结果可以通过Si含量和结构参数对作为Pd基非晶合金的结构单元的三角棱镜的形成的正面影响以及由三角棱镜对吸收氢的负面影响来解释。从观察到Pd-Pd原子距离随着吸收氢的伸长而观察到,H原子被认为占据了Pd原子之间的空间。 Pd-Pd原子距离的变化量与H2响应和LEC呈正相关。

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