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一种适用于高速流场的正交光束光热透镜光谱仪的光学结构及其在人血清和唾液中天冬氨酸测定中的应用。

An Optical Configuration of Crossed-Beam Photothermal Lens Spectrometer Operating at High Flow Velocities and Its Application for Cysteine Determination in Human Serum and Saliva.

机构信息

Department of Chemistry, Faculty of Basic Sciences , Tarbiat Modares University , P.O. Box 14115-175, Tehran , Iran.

出版信息

Anal Chem. 2018 Jul 3;90(13):8227-8233. doi: 10.1021/acs.analchem.8b01697. Epub 2018 Jun 19.

DOI:10.1021/acs.analchem.8b01697
PMID:29869876
Abstract

Photothermal lens spectrometry (TLS) is a high sensitive technique for trace determination of nonfluorescent materials. Previous photothermal lens spectrometers suffer from operating limitations at high flow velocities, arising from taking the heated element off the probe beam direction, which results in a decrease in the thermal lens (TL) signal. Herein, we describe an optical configuration of the crossed-beam photothermal lens in transversal flow mode in which the propagating direction of the probe beam and liquid sample flow azimuth are concentric (CBTC). The system consists of a microfluidic cell with a volume of lower than 3 μL. In the current optical configuration, using 1-(2-pyridylazo)-2-naphthol (PAN) in ethanol as a test solution, by increasing the sample flow velocity and without increasing chopping frequency, the reduction in sensitivity is less pronounced. Under a 15 Hz chopping frequency, the optimum sample flow velocity is about 2 cm s, which is among the highest reported values achieved to date for photothermal lens spectrometers. Although the system operates at higher flow velocities and lower chopping frequencies compared to the collinear configuration, it provides a comparable analytical limit of detection. This optical configuration has been successfully employed for highly sensitive and selective determination of cysteine in human serum and saliva samples through a competitive complexation reaction with Cu-PAN as a colorimetric probe. The detection limit of this method (9.5 nM) shows a significant enhancement (726-times) in comparison to UV-vis measurements.

摘要

光热透镜光谱法(TLS)是一种用于痕量非荧光物质测定的高灵敏度技术。以前的光热透镜光谱仪在高流速下受到操作限制,这是由于将加热元件从探头光束方向移开,导致热透镜(TL)信号减弱。在此,我们描述了一种在横向流动模式下交叉光束光热透镜的光学配置,其中探头光束和液体样品流动方位的传播方向是同心的(CBTC)。该系统由一个体积小于 3 μL 的微流控池组成。在当前的光学配置中,使用 1-(2-吡啶偶氮)-2-萘酚(PAN)在乙醇中作为测试溶液,通过增加样品流速而不增加斩波频率,可以减少灵敏度的降低。在 15 Hz 斩波频率下,最佳样品流速约为 2 cm s,这是迄今为止报道的光热透镜光谱仪中最高的流速之一。尽管与共线配置相比,该系统在更高的流速和更低的斩波频率下运行,但它提供了可比的分析检测限。该光学配置已成功用于通过与 Cu-PAN 作为比色探针的竞争络合反应,对人血清和唾液样本中的半胱氨酸进行高灵敏度和选择性测定。与紫外-可见测量相比,该方法的检测限(9.5 nM)显示出显著提高(726 倍)。

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