Phillips Mark C, Taubman Matthew S, Bernacki Bruce E, Cannon Bret D, Stahl Robert D, Schiffern John T, Myers Tanya L
Pacific Northwest National Laboratory, Richland, WA 99352, USA.
Analyst. 2014 May 7;139(9):2047-56. doi: 10.1039/c3an01642k.
We present results demonstrating real-time sensing of four different fluorocarbons at low part-per billion (ppb) concentrations using an external cavity quantum cascade laser (ECQCL) designed for infrared vibrational spectroscopy of molecules with broad absorption features. The ECQCL was repeatedly swept at 20 Hz over its full tuning range of 1145-1265 cm(-1) providing a scan rate of 3535 cm(-1) s(-1), and a detailed characterization of the ECQCL scan stability and repeatability is presented. The ECQCL was combined with a 100 meter path length multi-pass cell for direct absorption spectroscopy. A portable sensor system is described, which was deployed on a mobile automotive platform to provide spatially-resolved detection of fluorocarbons in outdoor experiments. Noise-equivalent detection limits of 800-1000 parts-per-trillion (ppt) are demonstrated for 1 s integration times.
我们展示了使用外腔量子级联激光器(ECQCL)在低十亿分之一(ppb)浓度下对四种不同碳氟化合物进行实时传感的结果,该激光器专为具有宽吸收特征的分子的红外振动光谱而设计。ECQCL以20 Hz的频率在其1145 - 1265 cm⁻¹的整个调谐范围内重复扫描,提供了3535 cm⁻¹ s⁻¹的扫描速率,并给出了ECQCL扫描稳定性和重复性的详细表征。ECQCL与一个100米光程的多通池相结合用于直接吸收光谱分析。描述了一种便携式传感器系统,该系统部署在移动汽车平台上,用于在户外实验中对碳氟化合物进行空间分辨检测。对于1秒的积分时间,展示了800 - 1000万亿分之一(ppt)的噪声等效检测限。