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微流控流动池中的吸收光谱学:使用金属包层泄漏波导器件和多孔凝胶波导层。

Absorption spectroscopy in microfluidic flow cells using a metal clad leaky waveguide device with a porous gel waveguide layer.

机构信息

School of Chemical Engineering and Analytical Science, University of Manchester, Manchester, UK.

出版信息

Analyst. 2013 Jan 7;138(1):307-14. doi: 10.1039/c2an35898k. Epub 2012 Nov 14.

Abstract

Broadband absorption spectroscopy is advantageous because the full spectral profile of an analyte can permit identification of species. This work for the first time investigates the feasibility of a metal clad leaky waveguide (MCLW) device to obtain an absorption spectrum of an analyte of interest, methylene blue, using a white light source in a microfluidic flow cell. The MCLW device comprises a porous low refractive index gel, agarose, deposited on a titanium coated glass slide. The device was capable of detecting 2.3 μM of methylene blue at a wavelength of 650 nm. The corresponding minimum detectable absorbance is 1.6 × 10(-1) cm(-1). In comparison to commonly used detection devices the MCLW is simpler, robust, easier to fabricate and can be easily interfaced to microfluidic devices. It was also possible to store the MCLW devices dry for up to a year and rehydrate them in 30 s to a working condition.

摘要

宽带吸收光谱法具有优势,因为分析物的全光谱轮廓可以允许对物种进行识别。本工作首次研究了金属包层泄漏波导(MCLW)器件在微流控流动池中的白光光源下获得感兴趣的分析物亚甲蓝吸收光谱的可行性。MCLW 器件由沉积在涂钛玻璃载玻片上的多孔低折射率凝胶琼脂糖组成。该器件能够在 650nm 波长处检测到 2.3μM 的亚甲蓝。相应的最小可检测吸光度为 1.6×10(-1)cm(-1)。与常用的检测设备相比,MCLW 更简单、更坚固、更容易制造,并且可以很容易地与微流控设备接口。也可以将 MCLW 器件干燥储存长达一年,然后在 30 秒内重新水合至工作状态。

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