Green Nicholas J B, Bhatti Zaheer A
Central Chemistry Laboratory, South Parks Road, Oxford, UK.
Phys Chem Chem Phys. 2007 Aug 21;9(31):4275-90. doi: 10.1039/b704519k. Epub 2007 Jul 17.
This paper investigates the application of the steady-state master equation (SSME) to complex unimolecular reactions. It is shown how the steady-state approximation and the Boltzmann reservoir approximation can be applied, both together or separately, to improve the efficiency and the numerical robustness of simple master equation calculations. The case of a two-well isomerization is considered in detail, and two versions of the SSME are derived for it, one of which shows very clearly and analytically the relationship between the rate coefficients and the flux coefficients. It is shown for a reversible second order recombination reaction that the second order phenomenological equation can be regained in either version of the SSME. It is also shown how, under steady state conditions, the SSME may be used to determine rate coefficients for each reaction in a multiple well scheme.
本文研究稳态主方程(SSME)在复杂单分子反应中的应用。展示了稳态近似和玻尔兹曼储库近似如何一起或分别应用,以提高简单主方程计算的效率和数值稳健性。详细考虑了双阱异构化的情况,并为其推导了两个版本的SSME,其中一个非常清晰地以解析方式展示了速率系数和通量系数之间的关系。对于可逆二级复合反应,表明在SSME的任一版本中都可以重新得到二级唯象方程。还展示了在稳态条件下,SSME可如何用于确定多阱体系中每个反应的速率系数。