Zheng Jingjing, Oyedepo Gbenga A, Truhlar Donald G
Department of Chemistry, Chemical Theory Center, and Supercomputing Institute, University of Minnesota , 207 Pleasant Street SE, Minneapolis, Minnesota 55455, United States.
J Phys Chem A. 2015 Dec 17;119(50):12182-92. doi: 10.1021/acs.jpca.5b06121. Epub 2015 Sep 23.
The kinetics of the hydrogen abstraction from 2-butanol by hydroxyl radical have been studied using multipath variational transition-state theory with the multidimensional small curvature tunneling approximation. The rate constants for each of the five hydrogen abstraction sites (C1, C2, C3, C4, and O) and the overall reaction have been computed by direct dynamics based on M08-HX/6-311+G(2df,2p) electronic structure calculations. We show that multistructural torsional anharmonicity, anharmonicity differences of high-frequency modes between the transition structures and the reactants, and reaction-path dependence of multiple reaction paths are all important factors for determining accurate reaction rates and branching fractions for this problem. The reaction barrier heights for abstraction from various sites follow the order C2 < C3 < C4 < C1 < O, but the reactivities of the various sites do not precisely follow the inverse order of barrier heights, and the order of reactivities depends on temperature. The abstractions from C2 and C3 have the largest contribution to the total reaction rate from 200 to 2000 K.
利用多路径变分过渡态理论和多维小曲率隧道近似方法,研究了羟基自由基从2-丁醇中夺取氢的动力学。基于M08-HX/6-311+G(2df,2p)电子结构计算,通过直接动力学计算了五个夺氢位点(C1、C2、C3、C4和O)以及总反应的速率常数。我们表明,多结构扭转非谐性、过渡结构与反应物之间高频模式的非谐性差异以及多反应路径的反应路径依赖性,都是确定该问题准确反应速率和分支比的重要因素。从不同位点夺取氢的反应势垒高度顺序为C2 < C3 < C4 < C1 < O,但不同位点的反应活性并不精确遵循势垒高度的反比顺序,且反应活性顺序取决于温度。在200至2000 K范围内,从C2和C3夺取氢对总反应速率的贡献最大。