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Hydrogen Sensor: Detecting Far-Field Scattering of Nano-Blocks (Mg, Ag, and Pd)

机译:氢传感器:检测纳米块的远场散射(Mg,Ag和Pd)

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摘要

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.
机译:氢传感器技术已经迅速发展。为有效和安全的感测,我们提出了由镁(Mg),银(Ag)和钯(Pd)纳米块组成的氢传感器,该纳米块克服光谱分辨率极限。该传感器在吸收氢气时利用Mg和Pd的性质。 MG成为介电材料,并且PD的原子晶格膨胀。这些属性导致纳米块之间的等离子体间隙模式的变化。由于变化模式变化,远场散射模式随氢浓度显着变化。因此,能够简单地通过以特定波长的入射光以一定角度检测到一定角度的远场强度来实现氢浓度。

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