Improvement and stabilization of optical hydrogen sensing ability of Au-Pd alloys

合金 材料科学 氢气储存 退火(玻璃) 金属 贵金属 纳米技术 薄膜 化学工程 晶格常数 催化作用 冶金 光学 化学 衍射 生物化学 有机化学 工程类 物理
作者
Yoshiaki Nishijima,Takuma Kurotsu,Naoki Yamasaku,Hajime Takahashii,Keisuke Kurihara,Takaaki Beni,Shinji Okazaki,Taro Arakawa,Armandas Balčytis,Gediminas Seniutinas,Saulius Juodkazis
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:28 (17): 25383-25383 被引量:8
标识
DOI:10.1364/oe.398784
摘要

Formation of metal hydrides is a signature chemical property of hydrogen and it can be leveraged to enact both storage and detection of this technologically important yet extremely volatile gas. Palladium shows particular promise as a hydrogen storage medium as well as a platform for creating rapid and reliable H 2 optical sensor devices. Furthermore, alloying Pd with other noble metals provides a technologically simple yet powerful way of enacting control over the structural and catalytic properties of the resultant material. Similarly, in addition to alloying, different top-down and bottom-up Pd nanostructuring methods have been proposed and investigated specifically for creating optical H 2 sensors. In this work it was determined that the hydrogen sensing ability of a series of Pd-Au alloy films could be improved by way of a hydrogen over exposure (HOE) treatment. Structural investigation showed that the HOE treatment, in addition to irreversibly altering the film morphology, results in a 1 to 2% expansion in the lattice constant of the metal. By combining a cyclic HOE treatment and alloy aging through annealing, the hydrogen detection sensitivity and response rates of Pd-Au films could be stabilized so that their performance would no longer be appreciably affected by repeated hydrogen uptake and release cycles. This work takes a further step towards routine all-optical detection of part-per-million level hydrogen gas concentrations in Pd-Au alloy films and discussion of ways to enhance response rates is provided.

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