Fabrication of ZnO/Au/prism-based surface plasmon resonance device for gas detection

R. Nuryadi, R. D. Mayasari, Lia Aprilia, B. Yuliarto
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引用次数: 6

Abstract

Surface plasmon resonance (SPR) sensing devices have attracted interest both from a fundamental physics perspective and as higly sensitive devices for detecting small chemical and biological objects. In this work, we design SPR device using a modified Kretschmann configuration for gas detection. After gold coating on the flat surface of BK-7 semicylindrical prism, ZnO microstructures which work as sensitive layer, are formed on the gold film surface. The light reflectance is measured for various angles in order to observe the SPR spectra. Next, we measure the shift of SPR angle due to response of ZnO sensitive layer to CO2 gas. It is found that the absorption of gas molecules on the sensitive layer produces the shift of SPR spectra to the higher incident angle. The change of the light reflectance due to the gas response on the time-dependent characteristics is also studied.
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ZnO/Au/棱镜基表面等离子体共振气体探测装置的研制
表面等离子体共振(SPR)传感装置无论是从基础物理学的角度来看,还是作为检测微小化学和生物物体的高灵敏度装置,都引起了人们的兴趣。在这项工作中,我们设计了使用改进的Kretschmann配置进行气体检测的SPR装置。在BK-7半柱棱镜的平面表面镀上金后,在金膜表面形成作为敏感层的ZnO微结构。为了观测SPR光谱,测量了不同角度的光反射率。接下来,我们测量了ZnO敏感层对CO2气体的响应引起的SPR角的位移。发现气体分子在敏感层上的吸收使SPR光谱向较高入射角偏移。研究了气体响应引起的光反射率随时间特性的变化。
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