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Surface plasmon assisted toxic chemical NO 2 gas sensor by Au?∕?ZnO functional thin films

机译:表面等离子体辅助有毒化学无2气体传感器由Au?/ zno功能性薄膜

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In this short communication, we propose a surface plasmon resonance (SPR) sensor based on a ZnO? / ?Au hybrid thin-film material structure and experimentally investigate its sensitivity improvement. The Kretschmann-based SPR sensor utilizes ZnO thin films and nanostructures for performance enhancement. The advancement in SPR technology relies on a low-cost, high-sensitivity, and high-selectivity sensor. Metal oxide (MO) has been incorporated into the SPR sensor to be used for detection of biological and chemical compounds. ZnO as one of the metal oxides is an attractive material due to its unique physical and optical properties. Numerous techniques for fabrication and characterization of ZnO on SPR gold substrate have been studied. The mechanism for gas and biomolecule detection depends on their interaction with the ZnO surface, which is mainly attributed to the high isoelectric point of ZnO. There are several types of ZnO nanostructures which have been employed for SPR application based on the Kretschmann configuration. In the future, the thin film and nanostructures of ZnO could be a potential application for miniature design, robust, high sensitivity, and a low-cost portable type of SPR biosensor to be used for on-site testing in a real-time and label-free manner. The present work includes the application of a developed SPR setup for gas sensing at room temperature using a specially designed gas cell. The change in the optical properties of dielectric layers (ZnO) with adsorption of gases (NO 2 ) in order to develop an optical sensor has been presented. The obtained results emphasize the applications of an SPR setup for the study of interaction of adsorbed gas molecules, with dielectrics and gas sensing.
机译:在这种短期通信中,我们提出了一种基于ZnO的表面等离子体共振(SPR)传感器? /?AU混合薄膜材料结构并通过实验研究其敏感性改进。基于Kretschmann的SPR传感器利用ZnO薄膜和纳米结构进行性能增强。 SPR技术的进步依赖于低成本,高灵敏度和高选择性传感器。金属氧化物(MO)已掺入SPR传感器中,以用于检测生物和化学化合物。由于其独特的物理和光学性质,ZnO作为金属氧化物之一是具有吸引力的材料。研究了许多用于制造和表征SPR金基板上的ZnO的特征。气体和生物分子检测的机制取决于它们与ZnO表面的相互作用,这主要归因于ZnO的高等电点。存在几种类型的ZnO纳米结构,该ZnO纳米结构已经基于Kretschmann配置用于SCR应用。在未来,ZnO的薄膜和纳米结构可能是微型设计,强大,高灵敏度和低成本便携式的SPR生物传感器的潜在应用,以便在实时和标签中用于现场测试 - 免费的方式。本工作包括使用特殊设计的燃气电池在室温下对气体感测的显影SPR设置。已经介绍了气体吸附的介电层(ZnO)的光学性质的变化,以便开发光学传感器。所得结果强调SPR设置对吸附气体分子相互作用的应用,具有电介质和气体传感。

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