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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A simple and compact blue diode laser powered excitation source for fluorescence detection in capillary electrochromatographic microchip separation
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A simple and compact blue diode laser powered excitation source for fluorescence detection in capillary electrochromatographic microchip separation

机译:一种简单且紧凑的蓝光二极管激光激励光源,用于毛细管电色谱微芯片分离中的荧光检测

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摘要

A simple and compact fluorescence excitation source was prepared using a 405. nm blue laser diode module and characterized in capillary electrochromatographic or capillary electrophoretic microchip separation. An inexpensive blue laser diode module with a tiny focusing lens was simply mounted at the center of an aluminum block on a miniature linear motion guide for heat dissipation and position control. A slit unit has a series of fifteen laser-machined slits with 1. mm space along the direction of the separation channel of the microchip above this unit. The laser beam was focused through a slit with 50μm width to the separation channel at the position of a desired length. Although the excitation source unit was connected to a simple current controlled power supply, it was stable with 0.1% drift per hour and 1.3% (1 σ) fluctuation in intensity. This simple excitation source can be prepared easily with inexpensive minimum optical components and mounted with a microchip on the stage of an ordinary fluorescence microscope for daily separation studies using a CE or CEC microchip. The applicability of the excitation source was evaluated with FITC-amino acid derivative mixtures using a polymer based CEC microchip packed fully with submicron silica beads in its microchannel.
机译:使用405. nm蓝色激光二极管模块制备了一个简单而紧凑的荧光激发源,并通过毛细管电色谱或毛细管电泳微芯片分离进行了表征。带有微型聚焦透镜的廉价蓝色激光二极管模块仅安装在微型线性运动导轨上铝块的中央,用于散热和位置控制。狭缝单元具有一系列十五个激光加工的狭缝,沿着该单元上方的微芯片分离通道的方向具有1.mm的间距。激光束通过宽度为50μm的缝隙聚焦到分离通道上所需长度的位置。尽管激励源单元连接到简单的电流控制电源,但它稳定,每小时漂移0.1%,强度波动1.3%(1σ)。这种简单的激发源可以很容易地用便宜的最少的光学元件来制备,并且可以将微芯片安装在普通荧光显微镜的载物台上,以便使用CE或CEC微芯片进行日常分离研究。激发源的适用性使用FITC-氨基酸衍生物混合物进行评估,使用的是基于聚合物的CEC微芯片,在其微通道中完全装有亚微米硅珠。

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