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通过测量分子再碰撞研究平移和旋转扩散之间的关系。

A study of the relation between translational and rotational diffusion through measurement of molecular recollision.

机构信息

Department of Physics and Astronomy and The Center for Supramolecular Studies, California State University at Northridge, Northridge, California 91330, USA.

出版信息

J Chem Phys. 2011 Jan 21;134(3):034503. doi: 10.1063/1.3514927.

Abstract

Translational and rotational diffusion rates of perdeuterated tempone (PDT) in ethanol are determined using electron paramagnetic resonance spectroscopy. The translational motion is measured on two scales: the macroscopic, as represented by the Heisenberg spin-exchange rate, and the microscopic, which entails recollisions between the same spin-exchange particle pair. The spin-exchange and recollision rates are used together to calculate the overall translational diffusion coefficient without recourse to assumptions concerning the value of the Stokes radius or collision distance. When observed as a function of solvent isothermal compressibility, the recollision time in ethanol is displaced from the common alkane curve at low temperatures but joins that curve at higher temperatures. Rotational correlation times in ethanol are obtained and show a decreasing rotation-translation coupling with increasing temperature, revealing a pattern that is qualitatively identical with respect to both collision and recollision. In comparison, an examination of PDT diffusion in toluene reveals an increasing rotation-translation coupling with increasing temperature. The contrasting behavior of the coupling in the two solvents is attributable to the degree of anisotropy in PDT rotation.

摘要

使用电子顺磁共振波谱法测定了重水(PDT)在乙醇中的平移和旋转扩散速率。平移运动在两个尺度上进行测量:宏观尺度,由海森堡自旋交换速率表示;微观尺度,涉及相同自旋交换粒子对之间的再碰撞。自旋交换和再碰撞速率一起用于计算总平移扩散系数,而无需假设斯托克斯半径或碰撞距离的值。当作为溶剂等温压缩性的函数观察时,在低温下,乙醇中的再碰撞时间偏离了常见的烷烃曲线,但在较高温度下加入该曲线。在乙醇中获得了旋转相关时间,并且随着温度的升高,旋转-平移偶合逐渐减小,这一模式在碰撞和再碰撞方面都是定性相同的。相比之下,研究 PDT 在甲苯中的扩散发现,随着温度的升高,旋转-平移偶合逐渐增加。两种溶剂中偶合的这种对比行为归因于 PDT 旋转的各向异性程度。

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