首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A simple and highly sensitive masking fluorescence detection system for capillary array electrophoresis and its application to food and medicine analysis
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A simple and highly sensitive masking fluorescence detection system for capillary array electrophoresis and its application to food and medicine analysis

机译:一种用于毛细管阵列电泳的简单敏感掩蔽荧光检测系统及其在食品和药物分析中的应用

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摘要

A high sampling rate, good stability, high throughput masking fluorescence detection system with easy positioning of each channel for capillary array electrophoresis was prepared and studied. A special mask combined with convex lenses was designed to modulate signals, without using any extra device to position each channel. The signal of each channel was detected by a photomultiplier tube, classified and saved by software. The design was used to evidently reduce the rotational vibration of optical components and to stabilize the system, so a high sampling rate was obtained by increasing the DC motor speed. To improve the optical system, optical fibers instead of conventional bulky optical components were used to transmit optical signal and to collect fluorescences in multiple directions, which greatly raised the sensitivity. Other important parameters including sampling rate, rotating speed and driven voltage laser diode (LDs) have also been investigated. Under optimal conditions, the performance of the detection system was evaluated. This novel system had a well-designed structure, and allowed independent multiple capillary operations and easy microanalysis. Its limit of detection for rhodamine 6G was 2.0 x 10(-2) mu g/mL. (C) 2020 Elsevier B.V. All rights reserved.
机译:制备良好的稳定性,良好的稳定性,高通量掩蔽荧光检测系统,具有易于定位每个通道的毛细管阵列电泳的荧光检测系统。设计与凸透镜结合的特殊掩模旨在调制信号,而无需使用任何额外的设备来定位每个通道。每个通道的信号由光电倍增管检测,由软件分类和保存。该设计用于显着降低光学部件的旋转振动并稳定系统,因此通过增加直流电动机速度获得高采样率。为了改善光学系统,使用光纤代替传统的庞大光学组件来传输光学信号并在多个方向上收集荧光,这大大提高了灵敏度。还研究了包括采样率,转速和驱动电压激光二极管(LDS)的其他重要参数。在最佳条件下,评估检测系统的性能。这种新型系统具有精心设计的结构,允许独立的多毛细管操作和易于微观分析。其对罗丹明6g的检测极限为2.0×10( - 2)mu g / ml。 (c)2020 Elsevier B.v.保留所有权利。

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