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On the curvature in logarithmic plots of rate coefficients for chemical reactions

机译:关于化学反应速率系数对数图中的曲率

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摘要

In terms of the reduced potential energy barrier 味 = 螖u TS /kT, the rate coefficients for chemical reactions are usually expressed as proportional to e-味. The coupling between vibrational modes of the medium to the reaction coordinate leads to a proportionality of the regularized gamma function of Euler Q(a,味) = 螕(a,味)/螕(a), with a being the number of modes coupled to the reaction coordinate. In this work, the experimental rate coefficients at various temperatures for several chemical reactions were fitted to the theoretical expression in terms of Q(a,味) to determine the extent of its validity and generality. The new expression affords lower deviations from the experimental points in 29 cases out of 38 and it accounts for the curvature in the logarithmic plots of rate coefficients versus inverse temperature. In the absence of tunneling, conventional theories predict the curvature of these plots to be identically zero.
机译:根据减少的势能垒味= TSu TS / kT,化学反应的速率系数通常表示为与e-味成比例。介质的振动模式与反应坐标之间的耦合导致Euler Q(a,味)=螕(a,味)/螕(a)的正则伽马函数成比例,其中a是耦合模式的数量到反应坐标。在这项工作中,根据Q(a,味)将几种化学反应在不同温度下的实验速率系数与理论表达式进行拟合,以确定其有效性和一般性。在38个案例中,有29个案例的新表达式与实验点的偏差较小,并且它解释了速率系数与反温度的对数图中的曲率。在没有隧道效应的情况下,传统理论预测这些曲线的曲率完全为零。

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