Hydrogen sensor: Detecting far-field scattering of nano-blocks (Mg, Ag, and Pd)

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Abstract

Hydrogen sensor technologies have been rapidly developing. For effective and safe sensing, we proposed a hydrogen sensor composed of magnesium (Mg), silver (Ag), and palladium (Pd) nano-blocks that overcomes the spectral resolution limit. This sensor exploited the properties of Mg and Pd when absorbing hydrogen. Mg became a dielectric material, and the atomic lattice of Pd expanded. These properties led to changes in the plasmonic gap mode between the nano-blocks. Owing to the changing gap mode, the far-field scattering pattern significantly changed with the hydrogen concentration. Thus, sensing the hydrogen concentration was able to be achieved simply by detecting the far-field intensity at a certain angle for incident light with a specific wavelength.

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Shin, E., Lee, Y. J., Nam, H., & Kwon, S. H. (2020, July 2). Hydrogen sensor: Detecting far-field scattering of nano-blocks (Mg, Ag, and Pd). Sensors (Switzerland). MDPI AG. https://doi.org/10.3390/s20143831

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