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Detection of saline-based refractive index changes via bilayer ZnO/Ag-coated glass optical fiber sensor

机译:通过双层ZnO / Ag涂层玻璃光纤传感器检测盐基折射率变化

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The combination of sensitive nanostructure thin films and optical fiber offers the great prospective for understanding the novel sensor concepts. The partially unclad and bilayer zinc oxide (ZnO)/silver (Ag)-coated multimode glass fiber as a simple and reliable probe is proposed in this work to detect the ambient refractive index changes using two broadband sources of IR and UV-Vis. The wavelength and intensity of propagating light both are modulated when the saline concentration is varied. The appropriate etching time for partially removing the cladding suitable for both IR and UV-Vis sources is 53 min. The fabricated ZnO/Ag/fiber sensor exhibits excellent repeatability and high sensitivity to saline with different concentrations from 0 to 30% at room temperature. Among the sensors probe, higher sensitivity is observed for ZnO/Ag/fiber sample when IR is used as a light source. In this sensor by changing the refractive index of the media from similar to 1 to similar to 1.38, the normalized intensity drop to 0.6 of its maximum value and corresponding wavelength shifted from similar to 1559 to similar to 1585 nm. The high sensitivity of fabricated probe is attributed to two phenomena related to bilayer structure of sensing probe: first, the uncontinuous Ag coating which makes the optical tunneling to the outer layer be possible and, second, altering the optical properties of ZnO by oxygen absorbance through interaction of saline by ZnO nanostructure and changing the refractive index of the deposited layer. The wavelength and intensity are found to be less sensitive for both partially unclad and ZnO/Ag/fiber once UV-Vis is used as a light source, which is due to slighter penetration of evanescent wave in the cladding part compared to IR source.
机译:敏感的纳米结构薄膜和光纤的结合为理解新型传感器概念提供了广阔的前景。在这项工作中,提出了使用部分宽带和双层氧化锌(ZnO)/银(Ag)涂层的多模玻璃纤维作为简单可靠的探针,以使用两个宽带IR和UV-Vis光源检测环境折射率变化的方法。当盐水浓度变化时,传播光的波长和强度均被调节。用于部分去除适用于IR和UV-Vis光源的覆层的适当蚀刻时间为53分钟。所制造的ZnO / Ag /纤维传感器在室温下具有0至30%的不同浓度,显示出极好的可重复性和对盐水的高灵敏度。在传感器探头中,当将IR用作光源时,ZnO / Ag /纤维样品的灵敏度更高。在此传感器中,通过将介质的折射率从相似的1更改为相似的1.38,归一化强度下降到其最大值的0.6,相应的波长从相似的1559变为相似的1585 nm。制成的探头的高灵敏度归因于与传感探头的双层结构有关的两种现象:首先,不连续的Ag涂层使光隧穿到外层成为可能;其次,通过吸收氧来改变ZnO的光学特性ZnO纳米结构通过盐水的相互作用和改变沉积层的折射率。一旦将UV-Vis用作光源,发现波长和强度对部分未包层和ZnO / Ag /光纤都不太敏感,这是由于van逝波在包层部分的穿透性要比IR光源小。

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