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基于光声和腔增强吸收光谱学的高灵敏度生物医学传感器,具有用于呼吸分析的新软件平台。

High-sensitivity biomedical sensor based on photoacoustic and cavity enhanced absorption spectroscopy with a new software platform for breath analysis.

出版信息

Appl Opt. 2021 Mar 1;60(7):2093-2099. doi: 10.1364/AO.417569.

Abstract

An easy-to-use highly sensitive sensor is reported for trace gas analysis. A near-infrared fiber-coupled external cavity diode laser in combination with a photoacoustic spectroscopy cell and a cavity enhanced absorption spectroscopy cell is used for analysis of trace gases. A software platform for direct absorption and wavelength modulation spectroscopy is developed in order to identify and quantify the molecules and to achieve a higher signal-to-noise ratio. Considering all of these features, the main advantage of our system is to analyze two different samples simultaneously and quickly. Trace gas measurement is assessed, and a detection limit of 1.5 ppb at 6528.76 for ammonia is demonstrated. Furthermore, the sensor with our software platform can be easily used outside of the laboratory, for example, in hospitals.

摘要

本文报道了一种用于痕量气体分析的简单、高灵敏度传感器。近红外光纤耦合外腔半导体激光器与光声光谱池和腔增强吸收光谱池相结合,用于痕量气体分析。为了识别和定量分子并获得更高的信噪比,开发了用于直接吸收和波长调制光谱的软件平台。考虑到所有这些特点,我们系统的主要优势是能够同时快速分析两个不同的样品。对痕量气体测量进行了评估,在 6528.76 处氨的检测限达到 1.5ppb。此外,带有我们软件平台的传感器可以很容易地在实验室外使用,例如在医院。

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