University of Ulm, Institute of Analytical and Bioanalytical Chemistry, Ulm, Germany.
Appl Spectrosc. 2011 Nov;65(11):1269-74. doi: 10.1366/11-06286.
The development of a hollow core waveguide (HWG) gas sensor in combination with a fast and compact near-infrared (NIR) spectrometer is presented. The spectrometer operates in the spectral range of 1200-1400 nm and may thus be applied for the detection of gas-phase analytes providing NIR absorptions in that spectral window such as, e.g., methane. Since mid-infrared spectroscopy in combination with HWGs has already been successfully demonstrated for probing hydrocarbons in the gas phase, the present study investigates the achievable sensitivity in the NIR spectral regime. Methane has been selected as an exemplary analyte due to the fact that it shows strong absorption features in the mid-infrared (mid-IR) fingerprint area, but also overtone bands in the NIR. Since the HWG simultaneously serves as a miniaturized absorption gas cell and as an optical waveguide for NIR radiation, a compact yet optical and cost-efficient sensor device was established providing an interesting alternative in target sensing for mid-IR devices. The achieved limit of detection (LOD) was 5.7% (vol./vol.) methane for a 9.5 cm long HWG, 1.6% (vol./vol.) methane for a 39.1 cm long HWG, and 1.3% (vol./vol.) methane for a setup using a 77.4 cm long HWG, which provides the most practical HWG dimensions among the three investigated setups. Limit of quantitation (LOQ) values were calculated at 20.1% (vol./vol.) methane, 8.7% (vol./vol.) methane, and 5.6% (vol./vol.) methane, respectively.
提出了一种结合高速紧凑型近红外(NIR)光谱仪的中空芯波导(HWG)气体传感器的发展。该光谱仪在 1200-1400nm 的光谱范围内运行,因此可用于检测在该光谱窗口中具有 NIR 吸收的气相分析物,例如甲烷。由于结合 HWG 的中红外光谱技术已经成功用于探测气相中的碳氢化合物,因此本研究调查了在近红外光谱范围内的可实现灵敏度。选择甲烷作为示例分析物,是因为它在中红外(mid-IR)指纹区域具有很强的吸收特征,但也在近红外区域具有泛音带。由于 HWG 同时用作小型化吸收气体池和近红外辐射的光波导,因此建立了紧凑但光学和经济高效的传感器设备,为中红外设备的目标感应提供了一种有趣的替代方案。对于 9.5cm 长的 HWG,实现的检测限(LOD)为 5.7%(体积/体积)甲烷,对于 39.1cm 长的 HWG,LOD 为 1.6%(体积/体积)甲烷,对于使用 77.4cm 长的 HWG 的设置,LOD 为 1.3%(体积/体积)甲烷,这提供了三种研究设置中最实用的 HWG 尺寸。定量限(LOQ)值分别计算为 20.1%(体积/体积)甲烷、8.7%(体积/体积)甲烷和 5.6%(体积/体积)甲烷。