State Key Laboratory of Molecular Reaction Dynamics and Center for Theoretical Computational Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, People's Republic of China.
J Chem Phys. 2011 Feb 14;134(6):064323. doi: 10.1063/1.3552088.
A new full-dimensional potential energy surface for the title reaction has been constructed using the modified Shepard interpolation scheme. Energies and derivatives were calculated using the UCCSD(T) method with aug-cc-pVTZ and 6-311++G(3df,2pd) basis sets, respectively. A total number of 30,000 data points were selected from a huge number of molecular configurations sampled by trajectory method. Quantum dynamical calculations showed that the potential energy surface is well converged for the number of data points for collision energy up to 2.5 eV. Total reaction probabilities and integral cross sections were calculated on the present surface, as well as on the ZBB3 and EG-2008 surfaces for the title reaction. Satisfactory agreements were achieved between the present and the ZBB3 potential energy surfaces, indicating we are approaching the final stage to obtain a global potential energy surface of quantitative accuracy for this benchmark polyatomic system. Our calculations also showed that the EG-2008 surface is less accurate than the present and ZBB3 surfaces, particularly in high energy region.
一个新的全维势能面已经被构建用于标题反应使用修正的 Shepard 插值方案。能量和导数计算使用 UCCSD(T)方法与aug-cc-pVTZ 和 6-311++G(3df,2pd)基组,分别。从轨迹方法采样的大量分子构型中选择了总共 30000 个数据点。量子动力学计算表明,对于碰撞能量高达 2.5 eV 的数据点数量,势能面很好地收敛。总反应概率和积分截面在本表面以及 ZBB3 和 EG-2008 表面上进行了计算。本研究和 ZBB3 势能面之间取得了令人满意的一致,表明我们正在接近获得这个基准多原子体系的具有定量精度的全局势能面的最终阶段。我们的计算还表明,EG-2008 表面不如本表面和 ZBB3 表面准确,特别是在高能区。