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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Design and evaluation of capillary coupled with optical fiber light-emitting diode induced fluorescence detection for capillary electrophoresis
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Design and evaluation of capillary coupled with optical fiber light-emitting diode induced fluorescence detection for capillary electrophoresis

机译:毛细管电泳与光纤发光二极管诱导的荧光检测耦合用于毛细管电泳的设计和评估

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摘要

A new detector, capillary coupled with optical fiber LED-induced fluorescence detector (CCOF-LED-IFD, using CCOF for short), is introduced for CE. The strategy of the present work was that the optical fiber and separation capillary were, in the parallel direction, fastened in a fixation capillary with larger inner diameter. By employing larger inner diameter, the fixation capillary allowed the large diameter of the optical fiber to be inserted into it. By transmitting an enhanced excitation light through the optical fiber, the detection sensitivity was improved. The advantages of the CCOF-CE system were validated by the detection of riboflavin, and the results were compared to those obtained by the in-capillary common optical fiber LED-induced fluorescence detector (IC-COF-LED-IFD, using COF for short). The LODs of CCOF-CE and COF-CE were 0.29 nM and 11.0 nM (S/N = 3), respectively. The intraday (n = 6) repeatability and interday (n = 6) reproducibility of migration time and corresponding peak area for both types of CE were all less than 1.10 and 3.30%, respectively. The accuracy of the proposed method was judged by employing standard addition method, and recoveries obtained were in the range of 98.0-102.4%. The results indicated that the sensitivity of the proposed system was largely improved, and that its reproducibility and accuracy were satisfactory. The proposed system was successfully applied to separate and determine riboflavin in real sample.
机译:为毛细管电泳引入了一种新的检测器,该检测器与光纤LED诱导的荧光检测器(CCOF-LED-IFD,简称CCOF)耦合。当前工作的策略是将光纤和分离毛细管沿平行方向固定在具有较大内径的固定毛细管中。通过采用较大的内径,固定毛细管可以将较大直径的光纤插入其中。通过使增强的激发光穿过光纤,提高了检测灵敏度。通过检测核黄素验证了CCOF-CE系统的优势,并将其结果与毛细管内普通光纤LED诱导荧光检测器(IC-COF-LED-IFD,简称COF)获得的结果进行了比较)。 CCOF-CE和COF-CE的LOD分别为0.29 nM和11.0 nM(S / N = 3)。对于两种类型的CE,迁移时间的日内(n = 6)重复性和日间(n = 6)重现性分别分别小于1.10和3.30%。采用标准加入法判断该方法的准确性,回收率在98.0-102.4%范围内。结果表明,该系统的灵敏度得到了很大的提高,其重现性和准确性令人满意。所提出的系统已成功应用于分离和测定实际样品中的核黄素。

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