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Behavior of Iodine in Binary Mixtures of Cyclohexane with Dioxane and Tetrahydrofuran Using a Multivariate Curve Resolution Technique

机译:多元曲线解析技术研究碘在环己烷与二恶烷和四氢呋喃二元混合物中的行为

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The electronic spectra of the iodine molecule in binary mixed solvent systems dioxane–cyclohexane and tetrahydrofuran–cyclohexane were subjected to the multivariate curve–resolution analysis. By using the singular value decomposition method, four different species were identified in the binary mixed solvents. The multivariate curve resolution–alternating least-squares (MCR–ALS) method of Tauler was used to extract the concentration profile and pure spectra of the species present in the mixed solvent systems. Evolving factor analysis was used to obtain the initial estimate of the concentration profiles of the components. The MCR-ALS was implemented by using selected constraints, such as, nonnegativity, unimodality, selectivity, and closure, which are applied during each iteration. Several MCR runs were performed by changing constraints to find the results with lowest fitting error and most chemically reasonable spectra and concentration profiles. From the resulting pure spectra for different iodine species and the corresponding concentration profiles, the nature of iodine species detected in the mixed solvent systems and the influence of the nature of cosolvent have been discussed.
机译:对二恶烷-环己烷和四氢呋喃-环己烷中的二元混合溶剂系统中的碘分子的电子光谱进行了多变量曲线分辨率分析。通过使用奇异值分解方法,在二元混合溶剂中鉴定出四种不同的物质。 Tauler的多元曲线分辨率-交替最小二乘(MCR-ALS)方法用于提取混合溶剂系统中存在的物质的浓度曲线和纯光谱。进化因子分析用于获得组分浓度曲线的初始估计。 MCR-ALS是通过使用选定的约束(例如非负性,单峰性,选择性和闭合性)来实现的,这些约束在每次迭代过程中都会应用。通过更改约束条件进行了几次MCR运行,以找到拟合误差最低,化学上最合理的光谱和浓度曲线的结果。从所得的不同碘物种的纯光谱和相应的浓度曲线,讨论了在混合溶剂系统中检测到的碘物种的性质以及助溶剂性质的影响。

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