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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Light-Emitting-Diode-Based Light Source for Calibration of an Intensified Charge-Coupled Device Detection System Intended for Galvanoluminescence Measurements
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Light-Emitting-Diode-Based Light Source for Calibration of an Intensified Charge-Coupled Device Detection System Intended for Galvanoluminescence Measurements

机译:基于发光二极管的光源,用于校准用于电致发光测量的增强型电荷耦合器件检测系统

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摘要

A spectrally tunable light source utilizing three light-emitting diodes (LEDs) for calibration of a highly sensitive intensified charge-coupled device (ICCD) optical detection system intended for time-resolved galvanoluminescence (GL) measurements is described. The source has been conceived as a low-cost substitute for standard tungsten lamps usually used for relative and absolute calibration of optical detection systems. Three LEDs with different spectral characteristics in conjunction with a system of two integrating spheres as light mixers and light reducers are used. This construction provides control over the source spectrum by changing individual LED contributions. The use of integration spheres eliminated angular distribution of light intensities of LEDs as well as angular dependence of their spectral contributions. Moreover, by using the source we have avoided the problem of stray and diffuse light of higher wavelengths, as well as different light intensities for different wavelengths (up to three orders of magnitude in the range from 400 nm to 750 nm), which we have with standard tungsten lamps. A complete calibration procedure for the LED source and ICCD detection system is described. Finally, for the first time, we have performed time-resolved spectral GL measurements during aluminum anodization in porous film-forming electrolyte phosphoric acid in a transient regime. Two peaks at 425 nm and 595 nm are recognized, confirming the same mechanism of GL in both transient and steady-state regimes of anodization.
机译:描述了一种光谱可调光源,该光源利用三个发光二极管(LED)来校准旨在用于时间分辨电发光(GL)测量的高灵敏度增强型电荷耦合器件(ICCD)光学检测系统。该光源被认为是通常用于光学检测系统的相对和绝对校准的标准钨丝灯的低成本替代品。使用具有不同光谱特性的三个LED以及两个作为积分器和减光器的积分球系统。这种结构通过改变单个LED的贡献来控制光源光谱。积分球的使用消除了LED光强度的角度分布及其光谱贡献的角度依赖性。此外,通过使用光源,我们避免了更高波长的杂散光和漫射光的问题,以及不同波长(在400 nm至750 nm范围内最多三个数量级)的光强度不同的问题与标准钨丝灯一起使用。描述了LED光源和ICCD检测系统的完整校准程序。最后,我们第一次在瞬态状态下在多孔膜形成电解质磷酸中进行铝阳极氧化期间进行了时间分辨光谱GL测量。在425 nm和595 nm处发现了两个峰,这证实了在阳极氧化的瞬态和稳态过程中GL的相同机理。

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