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CAPILLARY ELECTROPHORESIS-FLUORESCENCE LINE-NARROWING SYSTEM FOR ON-LINE STRUCTURAL CHARACTERIZATION OF MOLECULAR ANALYTES

机译:毛细管电泳-荧光谱线定位系统用于分子分析物的在线结构表征

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We have demonstrated, for the first time, that capillary electrophoresis (CE) can be interfaced with low-temperature fluorescence line-narrowing (FLN) spectroscopy for on-line structural characterization. Detection by laser-induced fluorescence spectroscopy, under fluorescence non-line-narrowing and Line-narrowing conditions, provides three-dimensional electropherograms and FLN spectra, which lead to significantly improved overall resolution and allow for structural characterization (''fingerprinting'') of molecular analytes. This novel CE-FLN system consists of a modular CE system, instrumentation for FLN spectroscopy, and a specially designed capillary cryostat (CC). An absorbance detector serves to determine the migration rates of analytes. After the 77 K fluorescence-based electropherogram is generated, the temperature of the capillary is lowered to 4.2 K for high-resolution FLN characterization. Automated translation of the CG and capillary in the direction of the capillary axis allows the separated analytes to be sequentially characterized by fluorescence spectroscopy as the capillary is translated through the laser excitation region. Detection of fluorescence from stationary CE-separated analytes significantly improves the accuracy of quantitation and structural characterization. We believe that this interfacing represents an exciting addition to the rapidly evolving field of CE, providing a new and powerful tool for chemical analysis. The first application of the CE-FLN system to a mixture of polycyclic aromatic hydrocarbons is presented; prospects and future applications of CE-FLN are briefly addressed.
机译:我们首次证明,毛细管电泳(CE)可以与低温荧光线窄化(FLN)光谱学进行接口,以进行在线结构表征。在荧光非线性变窄和线性变窄条件下,通过激光诱导的荧光光谱进行检测,可以提供三维电泳图和FLN光谱,从而显着提高了整体分辨率,并可以进行结构表征(“指纹识别”)分子分析物。这种新颖的CE-FLN系统由模块化CE系统,用于FLN光谱仪的仪器以及经过特殊设计的毛细管低温恒温器(CC)组成。吸光度检测器用于确定分析物的迁移速率。生成基于77 K荧光的电泳图后,毛细管的温度降低至4.2 K,以实现高分辨率FLN表征。 CG和毛细管在毛细管轴方向上的自动平移使分离的分析物在毛细管通过激光激发区平移时可以通过荧光光谱法进行顺序表征。从固定的CE分离的分析物中检测荧光可以显着提高定量和结构表征的准确性。我们相信,这种接口代表了快速发展的CE领域的激动人心的补充,为化学分析提供了一种新的强大工具。介绍了CE-FLN系统在多环芳烃混合物中的首次应用。简要介绍了CE-FLN的前景和未来应用。

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