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General Contribution of Nonspecific Interactions to Fluorescence Intensity

机译:非特异性相互作用对荧光强度的一般贡献

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摘要

Many chemical compounds, including nonfluorescent ones, induce changes in the fluorescence spectra of certain probes, such as berberine cation and Reichardt's betaine, both in the absence and the presence of solvent, that affect almost exclusively emission intensity. In this work, the application of fluorescence detection by intensity changes (FDIC) to HPLC and TLC chromatographic systems with fluorescence detectors has been studied. FDIC detection is of special interest in detecting nonfluorescent analytes, either in HPLC or in TLC mode. It does not involve covalent interactions, and the dielectric permittivity (E) of the medium plays an important role. The balance between nonspecific and specific interactions produces either an increase or a decrease in fluorescence intensity. Therefore, the influence of chromatographic conditions and chemical structure of analytes on the sign and magnitude of fluorescence peaks for sample detection in HPLC and TLC systems has been discussed. In general, probe nature and concentration determine response and detection sensitivity for a given sample in TLC and HPLC. As solubility and fluorescence properties in solvents determine the operating conditions for a FDIC probe in HPLC mode, nature and flows of mobile phase and solvent are important for chromatographic response and detection sensitivity.
机译:在不存在和存在溶剂的情况下,许多化合物,包括无荧光化合物,都会引起某些探针(例如小ber碱阳离子和莱卡特甜菜碱)的荧光光谱变化,这几乎完全影响发射强度。在这项工作中,已经研究了通过强度变化(FDIC)进行荧光检测在具有荧光检测器的HPLC和TLC色谱系统中的应用。 FDIC检测对于以HPLC或TLC模式检测非荧光分析物特别重要。它不涉及共价相互作用,并且介质的介电常数(E)起着重要作用。非特异性和特异性相互作用之间的平衡导致荧光强度的增加或减少。因此,已经讨论了色谱条件和分析物的化学结构对HPLC和TLC系统中样品检测的荧光峰的符号和强度的影响。通常,探针的性质和浓度决定了TLC和HPLC中给定样品的响应和检测灵敏度。由于溶剂中的溶解度和荧光性质决定了HPLC模式下FDIC探针的操作条件,因此流动相和溶剂的性质和流动性对于色谱响应和检测灵敏度至关重要。

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