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Hafnium—an optical hydrogen sensor spanning six orders in pressure

机译:—-压力范围跨越六个数量级的光学氢传感器

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摘要

Hydrogen detection is essential for its implementation as an energy vector. So far, palladium is considered to be the most effective hydrogen sensing material. Here we show that palladium-capped hafnium thin films show a highly reproducible change in optical transmission in response to a hydrogen exposure ranging over six orders of magnitude in pressure. The optical signal is hysteresis-free within this range, which includes a transition between two structural phases. A temperature change results in a uniform shift of the optical signal. This, to our knowledge unique, feature facilitates the sensor calibration and suggests a constant hydrogenation enthalpy. In addition, it suggests an anomalously steep increase of the entropy with the hydrogen/metal ratio that cannot be explained on the basis of a classical solid solution model. The optical behaviour as a function of its hydrogen content makes hafnium well-suited for use as a hydrogen detection material.
机译:氢气检测对于将其实现为能量矢量至关重要。到目前为止,钯被认为是最有效的氢感测材料。在这里,我们显示了钯封端的show薄膜显示出响应于超过六个数量级的压力的氢气暴露,光透射率具有高度可再现的变化。在此范围内,光信号无磁滞,包括两个结构相位之间的过渡。温度变化导致光信号的均匀偏移。据我们所知,此功能有助于传感器校准,并提示恒定的氢化焓。另外,这表明熵随氢/金属比的异常陡峭增加,这在经典固溶体模型的基础上无法解释。随其氢含量变化的光学行为使makes非常适合用作氢检测材料。

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