Department of Chemistry, University of Sheffield, Sheffield S3 7HF, United Kingdom.
Anal Chem. 2015 Aug 4;87(15):7803-9. doi: 10.1021/acs.analchem.5b01462. Epub 2015 Jul 22.
We report on improvements made on our previously introduced technique of cavity-enhanced Raman spectroscopy (CERS) with optical feedback cw-diode lasers in the gas phase, including a new mode-matching procedure which keeps the laser in resonance with the optical cavity without inducing long-term frequency shifts of the laser, and using a new CCD camera with improved noise performance. With 10 mW of 636.2 nm diode laser excitation and 30 s integration time, cavity enhancement achieves noise-equivalent detection limits below 1 mbar at 1 bar total pressure, depending on Raman cross sections. Detection limits can be easily improved using higher power diodes. We further demonstrate a relevant analytical application of CERS, the multicomponent analysis of natural gas samples. Several spectroscopic features have been identified and characterized. CERS with low power diode lasers is suitable for online monitoring of natural gas mixtures with sensitivity and spectroscopic selectivity, including monitoring H2, H2S, N2, CO2, and alkanes.
我们报告了在气相中使用带光学反馈连续波二极管激光器的腔增强拉曼光谱(CERS)技术方面的改进,包括一种新的模式匹配程序,该程序可使激光与光学腔保持共振,而不会引起激光的长期频率漂移,并使用具有改进噪声性能的新型 CCD 相机。在 10 mW 的 636.2 nm 二极管激光激发和 30 s 的积分时间下,腔增强在 1 巴总压力下达到低于 1 mbar 的噪声等效检测限,具体取决于拉曼截面。使用更高功率的二极管可以轻松提高检测限。我们进一步展示了 CERS 的一个相关分析应用,即天然气样品的多组分分析。已经确定并表征了几个光谱特征。使用低功率二极管激光器的 CERS 具有灵敏度和光谱选择性,适用于天然气混合物的在线监测,包括监测 H2、H2S、N2、CO2 和烷烃。