Bahnev B, van der Sneppen L, Wiskerke A E, Ariese F, Gooijer C, Ubachs W
Laser Centre, Vrije Universiteit, De Boelelaan 1081-1083, 1081 HVAmsterdam, The Netherlands.
Anal Chem. 2005 Feb 15;77(4):1188-91. doi: 10.1021/ac048428u.
A novel method for applying cavity ring-down spectroscopy in the liquid phase, compatible with LC analyses, is presented. The core of the setup is a home-built cavity ring-down flow cell (cell volume 12 microL) that is constructed using a silicon rubber spacer, which is clamped leak-tight between two high-reflectivity mirrors. The mirrors are in direct contact with the liquid flow, which provides for a small path length and short ring-down times. Inside the cavity there are no windows, reflection losses, or Brewster angles to be considered. Due to the small size of the presented cavity geometry, the setup can be implemented in conventional-size LC apparatuses. With a flow injection setup, a detection limit of 2.5 nM was obtained for Crystal Violet in ethanol, and the linear dynamic range of the system is at least 2 orders of magnitude. The method has the potential to become a powerful alternative for commercial LC UV/visible absorbance detectors.
本文提出了一种适用于液相的腔衰荡光谱法的新方法,该方法与液相色谱分析兼容。该装置的核心是一个自制的腔衰荡流通池(池体积为12微升),它由硅橡胶垫片构成,硅橡胶垫片被紧密夹在两个高反射率镜子之间。镜子与液体流直接接触,这使得光程长度较短且衰荡时间较短。腔内无需考虑窗口、反射损耗或布儒斯特角。由于所呈现的腔几何尺寸较小,该装置可应用于常规尺寸的液相色谱仪。在流动注射装置中,乙醇中结晶紫的检测限为2.5 nM,该系统的线性动态范围至少为2个数量级。该方法有潜力成为商用液相色谱紫外/可见吸光度检测器的有力替代方法。