首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >CCD detectors for molecular absorption spectrophotometry. A theoretical and experimental study on characteristics and performance
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CCD detectors for molecular absorption spectrophotometry. A theoretical and experimental study on characteristics and performance

机译:用于分子吸收分光光度法的CCD检测器。特性和性能的理论和实验研究

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摘要

Uncertainty in charge-coupled devices (CCDs) as UV-vis spectrophotometric detectors is studied here considering that it highly affects the limit of detection of analytical methods. Opposite to photomultiplier-type detectors (PMDs) and diode-array detectors (DADs), where uncertainty is mainly dependent on the photonic signal (shot noise), in CCD detectors uncertainty may come from both independent and dependent effects upon the photonic signal. Shot noise is specially important for high photonic signals in the detector (those for low absorbances) while the uncertainty that is independent of the signal is specially important for low photonic signals in the detector (those for high absorbances). That is, the main source of uncertainty is different depending on the value of the experimental measurement. On the other hand, temperature does not practically affect absorbance measurements, though it is very important for emission measurements (fluorescence, Raman,scattering, etc.). Mathematical equations for uncertainty are proposed with excellent fittings to the experimental data. The equation parameters can be experimentally determined from non-linear regression analysis and used to characterize spectrometers or to test their performance. In order to help buyers and users, some recommendations are finally given considering, among others, cooling,slit, attenuator or fiber optic assemblies.
机译:考虑到它会严重影响分析方法的检测范围,在此研究了作为紫外可见分光光度法检测器的电荷耦合器件(CCD)的不确定性。与光电倍增管型检测器(PMD)和二极管阵列检测器(DAD)相对,其中不确定性主要取决于光子信号(散粒噪声),而在CCD检测器中,不确定性可能来自对光子信号的独立和独立影响。散粒噪声对于检测器中的高光子信号(低吸收率的信号)特别重要,而与信号无关的不确定性对于检测器中的低光子信号(对于高吸收率的信号)特别重要。也就是说,不确定性的主要来源因实验测量值而异。另一方面,温度实际上对吸光度测量没有影响,尽管它对于发射测量(荧光,拉曼,散射等)非常重要。提出了不确定性数学方程,并与实验数据进行了很好的拟合。方程参数可以通过非线性回归分析通过实验确定,并用于表征光谱仪或测试其性能。为了帮助购买者和用户,最后给出一些建议,其中包括冷却,狭缝,衰减器或光纤组件。

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