具有功能化氮化硅光子电路的超灵敏折射率气体传感器

G. Antonacci, J. Goyvaerts, Haolan Zhao, B. Baumgartner, B. Lendl, R. Baets
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引用次数: 31

摘要

便携式和具有成本效益的气体传感器在许多环境,生物医学和工业应用方面的需求越来越大,但目前的设备仅限于专门的实验室,无法扩展到一般用途。在这里,我们展示了一个十亿分之一灵敏度的折射率气体传感器在光子芯片上基于氮化硅波导与介孔二氧化硅顶层包层功能化。通过监测集成的马赫-曾德尔干涉仪的输出光谱模式来检测低浓度的化学蒸汽,该干涉仪的一个涂覆臂暴露在气体蒸汽中。丙酮、异丙醇和乙醇的检测限分别为65 ppb、247 ppb和1.6 ppb。据我们所知,我们的片上折射率传感器为基于光子集成电路的低气体浓度提供了前所未有的灵敏度。因此,我们的研究结果预示着用于现场和实时环境监测和医疗诊断的紧凑、便携和廉价设备的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra-sensitive refractive index gas sensor with functionalized silicon nitride photonic circuits
Portable and cost-effective gas sensors are gaining demand for a number of environmental, biomedical and industrial applications, yet current devices are confined into specialized labs and cannot be extended to general use. Here, we demonstrate a part-per-billion-sensitive refractive index gas sensor on a photonic chip based on silicon nitride waveguides functionalized with a mesoporous silica top-cladding layer. Low-concentration chemical vapors are detected by monitoring the output spectral pattern of an integrated Mach-Zehnder interferometer having one coated arm exposed to the gas vapors. We retrieved a limit of detection of 65 ppb, 247 ppb and 1.6 ppb for acetone, isopropyl alcohol and ethanol, respectively. Our on-chip refractive index sensor provides, to the best of our knowledge, an unprecedented sensitivity for low gas concentrations based on photonic integrated circuits. As such, our results herald the implementation of compact, portable and inexpensive devices for on-site and real-time environmental monitoring and medical diagnostics.
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