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Optical hydrogen sensing beyond palladium: Hafnium and tantalum as effective sensing materials

机译:钯以外的光学氢感测:Ha和钽是有效的感测材料

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The detection of hydrogen in a fast, efficient and accurate way is vital for its safe handling in industrial processes and in its use as an energy carrier. Thin film metal hydrides are able to probe the hydrogen pressure, often relying on a change of the optical properties of a sensing layer comprised of palladium and alloys thereof. Apart from hysteresis, these palladium-based thin films suffer from a limited operating range. Here, we study the optical and structural properties of palladium capped hafnium and tantalum thin films. Both tantalum and hafnium thin films offer a stable and hysteresis-free optical response to hydrogen over a much larger pressure range than palladium-based films. Remarkably, the hydrogen content in both cases proves to be linear with the optical signal. In a wider perspective, these results illustrate that palladium-capped transition metals provide ample opportunities to design optical hydrogen sensors with desired properties.
机译:快速,高效和准确地检测氢气,对于其在工业过程中的安全处理以及用作能源载体至关重要。薄膜金属氢化物通常能够依靠由钯及其合金组成的传感层的光学特性变化来探测氢压力。除了滞后,这些基于钯的薄膜还具有有限的工作范围。在这里,我们研究了钯包覆的ha和钽薄膜的光学和结构性质。钽薄膜和ha薄膜在比钯基薄膜大得多的压力范围内,对氢都具有稳定且无滞后的光学响应。值得注意的是,在两种情况下,氢含量均与光信号呈线性关系。从更广泛的角度来看,这些结果表明,钯基过渡金属为设计具有所需性能的光学氢传感器提供了充足的机会。

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