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Integrated Optical Mach-Zehnder Interferometer Based on Organic-Inorganic Hybrids for Photonics-on-a-Chip Biosensing Applications

机译:基于有机-无机杂化的集成光学马赫曾德尔干涉仪用于芯片上光子学生物传感应用

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摘要

The development of portable low-cost integrated optics-based biosensors for photonics-on-a-chip devices for real-time diagnosis are of great interest, offering significant advantages over current analytical methods. We report the fabrication and characterization of an optical sensor based on a Mach-Zehnder interferometer to monitor the growing concentration of bacteria in a liquid medium. The device pattern was imprinted on transparent self-patternable organic-inorganic di-ureasil hybrid films by direct UV-laser, reducing the complexity and cost production compared with lithographic techniques or three-dimensional (3D) patterning using femtosecond lasers. The sensor performance was evaluated using, as an illustrative example, E. coli cell growth in an aqueous medium. The measured sensitivity (2 × 10−4 RIU) and limit of detection (LOD = 2 × 10−4) are among the best values known for low-refractive index contrast sensors. Furthermore, the di-ureasil hybrid used to produce this biosensor has additional advantages, such as mechanical flexibility, thermal stability, and low insertion losses due to fiber-device refractive index mismatch (~1.49). Therefore, the proposed sensor constitutes a direct, compact, fast, and cost-effective solution for monitoring the concentration of lived-cells.
机译:对于用于实时诊断的单芯片光子设备的便携式低成本,基于集成光学的生物传感器的开发引起了极大的兴趣,与当前的分析方法相比,该方法具有明显的优势。我们报告的制造和表征基于Mach-Zehnder干涉仪的光学传感器,以监测液体培养基中细菌的浓度。通过直接紫外激光将器件图案印在透明的可自构图案的有机-无机双脲混合物上,与光刻技术或飞秒激光的三维(3D)图案相比,降低了复杂性并降低了成本。作为示例,使用在水性介质中的大肠杆菌细胞生长来评估传感器性能。低折射率对比度已知的最佳值包括测得的灵敏度(2×10 −4 RIU)和检出限(LOD = 2×10 −4 )传感器。此外,用于生产该生物传感器的双脲混合物还具有其他优势,例如机械柔韧性,热稳定性以及由于光纤设备折射率失配(〜1.49)而导致的低插入损耗。因此,所提出的传感器构成了一种用于监测活细胞浓度的直接,紧凑,快速且具有成本效益的解决方案。

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