Department of Chemistry and Supercomputing Institute, University of Minnesota, Minneapolis, Minnesota 55455-0431, United States.
J Phys Chem A. 2011 Apr 7;115(13):2811-29. doi: 10.1021/jp110024e. Epub 2011 Mar 15.
The reactions of CH(3)OH with the HO(2) and CH(3) radicals are important in the combustion of methanol and are prototypes for reactions of heavier alcohols in biofuels. The reaction energies and barrier heights for these reaction systems are computed with CCSD(T) theory extrapolated to the complete basis set limit using correlation-consistent basis sets, both augmented and unaugmented, and further refined by including a fully coupled treatment of the connected triple excitations, a second-order perturbative treatment of quadruple excitations (by CCSDT(2)(Q)), core-valence corrections, and scalar relativistic effects. It is shown that the M08-HX and M08-SO hybrid meta-GGA density functionals can achieve sub-kcal mol(-1) agreement with the high-level ab initio results, identifying these functionals as important potential candidates for direct dynamics studies on the rates of these and homologous reaction systems.
甲醇与 HO(2)和 CH(3)自由基的反应在甲醇燃烧中很重要,并且是生物燃料中更重醇类反应的原型。使用 CCSD(T)理论,通过关联一致基组,包括完全耦合的连接三激发处理、四激发的二级微扰处理(通过 CCSDT(2)(Q))、核价修正和标量相对论效应,将这些反应体系的反应能和势垒高度外推到完全基组极限。结果表明,M08-HX 和 M08-SO 杂化meta-GGA 密度泛函可以与高精度从头算结果达到亚千卡每摩尔(-1)的一致性,这表明这些泛函是直接动力学研究这些和同源反应体系速率的重要潜在候选者。