可重复吸光度测量的宝贵技术

IF 0.8 4区 化学 Q4 SPECTROSCOPY Spectroscopy Pub Date : 2022-08-01 DOI:10.56530/spectroscopy.ew5383i7
D. Guenther
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引用次数: 0

摘要

光谱学提供了一系列可用的技术,这些技术可以通过使用或不使用参考光谱来区分。这种区别意味着,拉曼或荧光等技术通常会查看原始强度输出,而透射或反射等技术则需要一些参考扫描来计算这些相对输出。在一组参考光谱技术中,由于比尔定律的浓度依赖性,吸光度是最常见的一种,并且具有很大的价值。然而,只有当系统组件和样本可重复时,这个值才会被正确捕获,无论是参考扫描还是实时采集。本文讨论了建立这种可重复性的几种有用技术,包括适当的试管和探针处理、组件设置和样品注意事项。通过优化测量系统的可重复性,从吸光度输出计算的观察浓度值更加准确,并且与被测样品相关。
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Valuable Techniques for Repeatable Absorbance Measurements
Spectroscopy offers a range of available techniques that can be differentiated by the use or omission of reference spectra. This differentiation means that techniques such as Raman or fluorescence typically look at raw intensity outputs, whereas techniques such as transmission or reflectance require some reference scan to calculate those relative outputs. Within the group of referenced spectral techniques, absorbance is easily one of the most common and offers much value because of the concentration dependence of Beer’s Law. However, this value is only properly captured when system components and samples are made to be repeatable, both for the reference scans and live acquisitions. This article discusses several useful techniques to establish this repeatability, including proper cuvette and probe handling, component setup, and sample considerations. By optimizing repeatability of the measurement system, the observed concentration values calculated from absorbance outputs are much more accurate and relevant to the sample being measured.
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来源期刊
Spectroscopy
Spectroscopy 物理-光谱学
CiteScore
1.10
自引率
0.00%
发文量
0
审稿时长
3 months
期刊介绍: Spectroscopy welcomes manuscripts that describe techniques and applications of all forms of spectroscopy and that are of immediate interest to users in industry, academia, and government.
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