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Influence of Layers Morphology on the Sensitivity of SnO2-based Optical Fiber Sensors

机译:层形态对基于SnO2的光纤传感器敏感性的影响

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Recently, the capability of a SnO2 based silica optical fiber (SOF) sensors to detect ammonia at room temperature in water environment has been for the first time demonstrated [1-3]. The SOF probes were deposited onto the fiber end by the simple and low cost Electrostatic Spray Pyrolysis technique (ESP), which allows to change the layers features by changing the deposition parameters. Here, it is experimentally demonstrated that modifications of the optical near field behavior occur when the sensitive overlay exhibits peaks with dimensions comparable with the light wavelength (1.55 mum). In addition, the influence of the SnO2 layers morphology on the room temperature sensing performances against ammonia, in water environment, is preliminarily investigated. To the aim, before performing the ammonia adsorption measurements, the topography and the optical near field profile for different SnO2-based sensors have been analyzed by a very complex instrumentation able to perform simultaneous atomic force microscopy (AFM) and scanning near-field optical microscopy (SNOM) imaging.
机译:最近,第一次证明[1-3]首次展示了基于SnO 2 基于水环境温度下氨的氨的氨基光纤(SOF)传感器。通过简单且低成本的静电喷射热解技术(ESP)沉积将SOF探针沉积在纤维端上,这允许通过改变沉积参数来改变层特征。这里,实验证明了当敏感覆盖物呈现与光波长(1.55mum)相当的尺寸的峰时发生光学近场行为的修改。此外,初步研究了对水环境中对氨的室温感测性能的SnO 2 形态的影响。为了目的,在执行氨吸附测量之前,通过非常复杂的仪器进行同时原子力显微镜(AFM )扫描近场光学显微镜(SNOM)成像。

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