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Solvation effect on kinetic rate constant of reactions in supercritical solvents

机译:溶剂化对超临界溶剂中反应动力学速率常数的影响

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摘要

A statistical mechanical analysis of the solvation effects on the kinetic rate constants of reactions in near and supercritical solvents is presented to understand the experimental findings regarding the thermodynamic pressure effects. This is an extension of the solvation formalism of Chialvo and Cummings to the analysis of the microscopic basis for the macroscopic pressure and temperature effects on the kinetic rate constants of reactions conducted in the compressible region of the solvent phase diagram. This analysis is illustrated with integral equations calculations involving Lennard-Jones infinitely dilute quaternary systems to describe the species in solution during the reaction of triplet benzophenone ((BP)-B-3) with a cosolvent (either O-2 or 1,4-cyclohexadiene) in supercritical CO2 along the supercritical isotherms T-r = 1.01 and 1.06. The role of the species molecular asymmetries and consequently their solvation behavior in determining the thermodynamic pressure and temperature effects on the kinetic rate constant of reactions at near-critical conditions are discussed. [References: 59]
机译:提出了在近临界和超临界溶剂中溶剂化作用对反应动力学速率常数的统计力学分析,以了解有关热力学压力效应的实验结果。这是Chialvo和Cummings的溶剂化形式形式的扩展,用于分析宏观压力和温度对在溶剂相图的可压缩区域中进行的反应动力学速率常数的微观影响。涉及Lennard-Jones无限稀释四元系统的积分方程计算可以说明这种分析,以描述三重态二苯甲酮((BP)-B-3)与助溶剂(O-2或1,4-沿超临界等温线Tr = 1.01和1.06的超临界CO2中的环己二烯)。讨论了物种分子不对称性的作用及其在确定近临界条件下反应动力学速率常数的热力学压力和温度影响中的溶剂化行为。 [参考:59]

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