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通过二维红外振动回波化学交换光谱法探测溶质 - 溶剂络合物的动力学和热力学。

Solute-solvent complex kinetics and thermodynamics probed by 2D-IR vibrational echo chemical exchange spectroscopy.

作者信息

Zheng Junrong, Fayer M D

机构信息

Department of Chemistry and Pulse Institute, Stanford University, Stanford, CA 94305, USA.

出版信息

J Phys Chem B. 2008 Aug 21;112(33):10221-7. doi: 10.1021/jp804087v. Epub 2008 Jul 30.

Abstract

The formation and dissociation kinetics of a series of triethylsilanol/solvent weakly hydrogen bonding complexes with enthalpies of formation ranging from -1.4 to -3.3 kcal/mol are measured with ultrafast two-dimensional infrared (2D IR) chemical exchange spectroscopy in liquid solutions at room temperature. The correlation between the complex enthalpies of formation and dissociation rate constants can be expressed with an equation similar to the Arrhenius equation. The experimental results are in accord with previous observations on eight phenol/solvent complexes with enthalpies of formation from -0.6 to -2.5 kcal/mol. It was found that the inverse of the solute-solvent complex dissociation rate constant is linearly related to exp(-DeltaH0/RT) where DeltaH0 is the complex enthalpy of formation. It is shown here, that the triethylsilanol-solvent complexes obey the same relationship with the identical proportionality constant, that is, all 13 points, five silanol complexes and eight phenol complexes, fall on the same line. In addition, features of 2D IR chemical exchange spectra at long reaction times (spectral diffusion complete) are explicated using the triethylsilanol systems. It is shown that the off-diagonal chemical exchange peaks have shapes that are a combination (outer product) of the absorption line shapes of the species that give rise to the diagonal peaks.

摘要

在室温下的液体溶液中,使用超快二维红外(2D IR)化学交换光谱法测量了一系列三乙硅醇/溶剂弱氢键络合物的形成和解离动力学,其形成焓范围为-1.4至-3.3 kcal/mol。络合物形成焓和解离速率常数之间的相关性可以用类似于阿伦尼乌斯方程的方程表示。实验结果与先前对八种形成焓为-0.6至-2.5 kcal/mol的苯酚/溶剂络合物的观察结果一致。发现溶质-溶剂络合物解离速率常数的倒数与exp(-ΔH0/RT)呈线性关系,其中ΔH0是络合物的形成焓。此处表明,三乙硅醇-溶剂络合物遵循相同的关系,比例常数相同,即所有13个点,五个硅醇络合物和八个苯酚络合物,都落在同一条线上。此外,使用三乙硅醇体系解释了长反应时间(光谱扩散完成)下2D IR化学交换光谱的特征。结果表明,非对角化学交换峰的形状是产生对角峰的物种吸收线形状的组合(外积)。

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