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Terpene Detection Based on Localized Surface Plasma Resonance of Thiolate-Modified Au Nanoparticles

机译:硫醇盐修饰的金纳米粒子基于局部表面等离子体共振的萜烯检测

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摘要

The detection of terpene vapors, a group of biomarker vapors emitted by plants during their growth process, is an efficient way to monitor plant growth status and control plant pests and disease. In this study, a gas sensor based on the localized surface plasma resonance (LSPR) of Au nanoparticles (Au NPs) is proposed for the terpene vapors detection. Au ion sputtering method is used to deposit Au NPs on transparent glass substrates. The dependence of transmission spectra on the morphology of Au NPs prepared by different sputtering conditions is investigated. In order to enhance the sensitivity and selectivity of the sensor, thiolate modification is applied to form the selective soluble monolayer on the surface of Au NPs. The results indicate that different thiolates could form different steric capping layers, and the responding ability of the LSPR sensor is verified by a red-shift of the minimum transmittance in wavelength $(Deltalambda_{min})$ and a decrease in the minimum transmittance $(Delta{rm T}_{min})$ upon exposure to terpene vapors.
机译:萜烯蒸气是植物在生长过程中排放的一组生物标志物蒸气,是监测植物生长状况和控制植物病虫害的有效方法。在这项研究中,提出了一种基于Au纳米颗粒(Au NPs)的局部表面等离子体共振(LSPR)的气体传感器用于萜烯蒸气检测。金离子溅射法用于在透明玻璃基板上沉积金纳米粒子。研究了透射光谱对不同溅射条件制备的金纳米颗粒形态的依赖性。为了增强传感器的灵敏度和选择性,应用硫醇盐修饰以在Au NPs表面形成选择性可溶性单层。结果表明,不同的硫醇盐可能形成不同的空间覆盖层,并且通过最小透射率在波长上的红移证实了LSPR传感器的响应能力。<公式式> =“ inline”> $(Deltalambda_ {min})$ 和最小透射率的降低 $(Delta {rm T} _ {min} )$ 暴露于萜烯蒸气中。

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