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Light emitting diode-based detectors Absorbance,fluorescence and spectroelectrochemical measurements in a planar flow-through cell

机译:基于发光二极管的检测器平面流通池中的吸光度,荧光和光谱电化学测量

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摘要

Light emitting diodes (LEDs) were first used for chemical analysis three decades ago.They are finally making their appearance in commercial analytical systems and dedicated detectors.LEDs are the most energy-efficient means of producing monochromatic light,and provide a concentrated small cool emitter ideal for miniature analytical devices.Although they rank behind fluorescent and halogen discharge lamps in total conversion efficiency (1m/W),new efficiency records are being set every year such that by next decade broadband (white) LED sources are not only likely in analytical instrumentation,but for general illumination.This paper begins with a review of analytical use of LEDs that has been advanced in the last decade.LED-based absorbance measurement and its use in pedagogy,titrations,in providing immunity to refractive index and turbidity effects,in field and process analysis,in capillary electrophoresis (CE),in liquid-liquid extraction systems,in film and drop-based analytical systems and with liquid core waveguides (LCWs) are discussed.LED-based fluorescence and spectroelectrochemical detection follows next.Multipurpose LED-based analytical instrumentation and special analytical applications and general applications are discussed.A listing of (mostly web-based) resources for fabricating LED-based detectors is then provided.Detector circuits and available components are considered and different modes of driving LEDs are compared.The temperature dependence of LED characteristics and strategies to ameliorate this problem are discussed.The review and general resource material is followed with the construction details,operation and performance observed for a simple-to-fabricate multipurpose cell that allows simultaneous multiwavelength absorance,fluorescence and spectroelectrochemical detection.
机译:发光二极管(LED)于三十年前首次用于化学分析,最终在商业分析系统和专用检测器中出现.LED是产生单色光的最节能方式,并提供集中的小型冷发射器尽管它们在总转换效率(1m / W)方面落后于荧光灯和卤素放电灯,但每年仍在刷新新的效率记录,因此到下一个十年,宽带(白色)LED光源不仅可能用于分析仪器,但用于一般照明。本文首先回顾了近十年来对LED的分析用途。基于LED的吸光度测量及其在教学法,滴定法中的用途,以提供对折射率和浊度效应的免疫力,在现场和过程分析中,在毛细管电泳(CE)中,在液-液萃取系统中,在基于膜和液滴的分析系统中并讨论了带液芯波导(LCW)的器件,接下来是基于LED的荧光和光谱电化学检测,讨论了基于LED的多用途分析仪器以及特殊的分析应用和一般应用。(主要是基于Web的)制造资源清单然后提供了基于LED的检测器,考虑了检测器电路和可用组件,并比较了驱动LED的不同模式。讨论了LED特性的温度依赖性以及解决此问题的策略。观察到的详细信息,操作和性能,这是一种易于制造的多功能电池,可同时进行多波长吸收,荧光和光谱电化学检测。

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