航程(航空)
统计物理学
过渡态理论
国家(计算机科学)
离子键合
角动量
多样性(控制论)
化学
简单(哲学)
产量(工程)
弹道
热力学
物理
数学
材料科学
经典力学
量子力学
动力学
算法
统计
离子
反应速率常数
认识论
哲学
复合材料
作者
Yuri Georgievskii,Stephen J. Klippenstein
摘要
The implementation of variational transition state theory (VTST) for long-range asymptotic potential forms is considered, with particular emphasis on the energy and total angular momentum resolved (microJ-VTST) implementation. A long-range transition state approximation yields a remarkably simple and universal description of the kinetics of reactions governed by long-range interactions. The resulting (microJ-VTST) implementation is shown to yield capture-rate coefficients that compare favorably with those from trajectory simulations (deviating by less than 10%) for a wide variety of neutral and ionic long-range potential forms. Simple analytic results are derived for many of these cases. A brief comparison with a variety of low-temperature experimental studies illustrates the power of this approach as an analysis tool. The present VTST approach allows for a simple analysis of the applicability conditions for some related theoretical approaches. It also provides an estimate of the temperature or energy at which the "long-range transition state" moves to such short separations that short-range effects, such as chemical bonding, steric repulsion, and electronic state selectivity, must be considered.
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