Yang J, Her J W, Chen S H
Chung-Yuan Christian University, Chung-Li, Taiwan.
Anal Chem. 1999 Sep 1;71(17):3740-6. doi: 10.1021/ac9903252.
In this paper, a new detection method based on an infrared hollow waveguide is developed to detect semivolatile to nonvolatile organic compounds in aqueous solutions. The hollow waveguide is produced by chemical deposition of silver on the inner surface of a polyethylene tube. The surface of the silver layer is further coated with a hydrophobic film to attract organic compounds in aqueous solution. Samples were pumped through this hollow waveguide sampler and organic compounds were attracted onto the hydrophobic film. After removal of the residual water molecules in the hollow waveguide sampler, organic compounds can be sensed by conventional Fourier transform infrared (FT-IR) spectrometry. Theoretical aspects of this type of sampler are also presented. The derived analytical equations for this type of sampler were consistent with experimental data. Under the condition of constant hydrophobic film volume, high linearity (R(2) equal to 0.9993) between the concentration of analyte and the detected signal was obtained for concentrations in the range from 2.5 ppm to 50 ppb. By co-adding 100 scans with 4 cm(-)(1) resolution, the typical detection limit in this type of sensing method can be lower than 10 ppb. Several factors such as sampling flow rate, sampling time, and hydrophobic film volume were also investigated in this work.
本文开发了一种基于红外空心波导的新检测方法,用于检测水溶液中的半挥发性至非挥发性有机化合物。空心波导是通过在聚乙烯管内表面化学沉积银制成的。银层表面进一步涂覆有疏水膜,以吸引水溶液中的有机化合物。样品被泵入该空心波导采样器,有机化合物被吸引到疏水膜上。在去除空心波导采样器中的残留水分子后,有机化合物可通过传统的傅里叶变换红外(FT-IR)光谱法进行检测。本文还介绍了这种类型采样器的理论方面。推导得到的这种类型采样器的分析方程与实验数据一致。在疏水膜体积恒定的条件下,对于浓度范围为2.5 ppm至50 ppb的分析物,其浓度与检测信号之间获得了高线性度(R²等于0.9993)。通过以4 cm⁻¹分辨率共添加100次扫描,这种传感方法的典型检测限可低于10 ppb。本文还研究了采样流速、采样时间和疏水膜体积等几个因素。