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Optical fiber lossy-mode resonance sensors with doped tin oxides for optical working electrode monitoring in electrochemical systems

机译:具有掺杂锡氧化物的光纤有损模式谐振传感器,用于电化学系统中的光学工作电极监测

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This work discusses optical fiber sensors based on lossy-mode resonance (LMR) effect and their potential for simultaneous sensing in multiple domains, i.e., optical and electrochemical. As electrically conductive materials able to guide lossy modes, two doped tin oxides, i.e., fluorine doped tin oxide (FTO) and indium tin oxide (ITO) thin films were employed. Since the ITO-LMR sensor has already been discussed broader, this work focuses on properties of the FTO-LMR sensor and brief comparison of devices based on the two materials. In optical domain the sensitivity to surrounding medium refractive index was determined by immersing the sensors in solutions of different refractive index. Both the sensors showed sensitivity of 300 nm/RIU in a refractive index range of approx. 1.33-1.39 RIU. Electrochemical measurements were performed in 0.01 M phosphate-buffered saline (PBS, pH 7.0) to identify the influence of the applied potential on the optical response of both sensors. In applied potential from -1.0 V to 1.0 V the FTO-LMR sensor reached LMR shift of 31.3 nm compared to 23.8 nm of the ITO-LMR one.
机译:该工作讨论了基于有损模式共振(LMR)效应的光纤传感器及其在多个域中同时感测的可能性,即光学和电化学。作为能够引导有损耗模式的导电材料,使用两种掺杂的氧化锡,即氟掺杂氧化锡(FTO)和氧化铟锡(ITO)薄膜。由于ITO-LMR传感器已经更广泛地讨论,这项工作侧重于FTO-LMR传感器的性质,并简要比较了基于两种材料的器件。在光学域中,通过将传感器浸入不同折射率的溶液中来确定对周围介质折射率的灵敏度。两个传感器在折射率范围内显示300nm / Riu的敏感性。 1.33-1.39 RIU。在0.01M磷酸盐缓冲盐水(PBS,pH7.0)中进行电化学测量,以识别施加电位对两个传感器的光学响应的​​影响。在-1.0V至1.0V的施加电位中,FTO-LMR传感器达到31.3nm的LMR偏移,而ITO-LMR ONE的23.8nm。

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