氢
合金
材料科学
氢气储存
钯
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
有机化学
工程类
物理
生物化学
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
[The Optical Society]
日期:2020-08-12
卷期号:28 (17): 25383-25383
被引量:8
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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