核黄素及其光产物的多组分光谱分析及其动力学应用

M. Sheraz, S. Kazi, Sofia Ahmed, Kiran Qadeer, M. Khan, I. Ahmad
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引用次数: 16

摘要

核黄素(RF)是一种光敏化合物,已知可形成许多光产物。这些光产物具有相同的核,可能干扰RF的紫外和可见光谱分析。因此,有必要采用多组分光谱分析方法对维生素及其光产物进行准确定量。这些方法有助于研究RF光降解反应的动力学,以获得准确可靠的结果。在这些方法中,由于微小未知产物的线性或非线性无关吸收而引起的任何干扰都可以通过在动力学处理之前应用适当的校正程序来解释。讨论了影响这些分析方法的准确度、精密度和选择性的各种因素。本文综述了多组分光谱法的原理和应用,以及多组分光谱法在降解溶液中同时测定RF及其主要光产物以评价降解动力学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multicomponent spectrometric analysis of riboflavin and photoproducts and their kinetic applications
Riboflavin (RF) is a light sensitive compound and is known to form a number of photoproducts. These photoproducts possess the same nucleus and may interfere in the analysis of RF by UV and visible spectrometry. Therefore, it is necessary to apply the methods of multicomponent spectrometric analysis to quantify the vitamin and its photoproducts accurately. Such methods are useful in the study of the kinetics of photodegradation reactions of RF to obtain accurate and reliable results. Any interference in these methods due to linear or nonlinear irrelevant absorption of the minor unknown products can be accounted for by the application of appropriate correction procedures prior to kinetic treatment. Various factors affecting the accuracy, precision and selectivity of these analytical procedures are also discussed. This review highlights the principles and applications of multicomponent spectrometric methods and their application to the simultaneous determination of RF and its major photoproducts in degraded solutions to evaluate the kinetics of degradation.
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