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Label-Free Water Sensors Using Hybrid Polymer-Dielectric Mid-Infrared Optical Waveguides

机译:使用混合聚合物介电中红外光波导的无标签水传感器

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摘要

A chip-scale mid-IR water sensor was developed using silicon nitride (SiN) waveguides coated with poly(glycidyl methacrylate) (PGMA). The label-free detection was conducted at lambda = 2.6-2.7 mu m because this spectral region overlaps with the characteristic O-H stretch absorption while being transparent to PGMA and SiN. Through the design of a hybrid waveguide structure, we were able to tailor the mid-IR evanescent wave into the PGMA layer and the surrounding water and, consequently, to enhance the light-analyte interaction. A 7.6 times enhancement of sensitivity is experimentally demonstrated and explained by material integration engineering as well as waveguide mode analysis. Our sensor platform made by polymer-dielectric hybrids can be applied to other regions of the mid-IR spectrum to probe other analytes and can ultimately achieve a multispectral sensor on-a-chip.
机译:使用涂有聚甲基丙烯酸缩水甘油酯(PGMA)的氮化硅(SiN)波导开发了芯片级中红外水传感器。无标记检测是在λ= 2.6-2.7μm的条件下进行的,因为该光谱区域与特征O-H拉伸吸收重叠,同时对PGMA和SiN透明。通过混合波导结构的设计,我们能够将中红外渐逝波调整到PGMA层和周围的水中,从而增强了光-分析物的相互作用。通过材料集成工程以及波导模式分析,实验证明了灵敏度提高了7.6倍。我们的由聚合物-电介质混合材料制成的传感器平台可以应用于中红外光谱的其他区域,以探测其他分析物,最终可以在芯片上实现多光谱传感器。

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