Theoretical Chemistry, Institute for Molecules and Materials (IMM), Radboud University Nijmegen, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.
J Chem Phys. 2009 Dec 14;131(22):224314. doi: 10.1063/1.3268920.
We present four-dimensional ab initio potential energy surfaces for the three different spin states of the NH((3)Sigma(-))-NH((3)Sigma(-)) complex. The potentials are partially based on the work of Dhont et al. [J. Chem. Phys. 123, 184302 (2005)]. The surface for the quintet state is obtained at the RCCSD(T)/augmented correlation-consistent polarized valence triple-zeta (aug-cc-pVTZ) level of theory and the energy differences with the singlet and triplet states are calculated at the complete active space with nth-order perturbation theory/aug-cc-pVTZ (n=2,3) level of theory. The ab initio potentials are fitted to coupled spherical harmonics in the angular coordinates, and the long range is further expanded as a power series in 1/R. The RCCSD(T) potential is corrected for a size-consistency error of about 0.5x10(-6) E(h) prior to fitting. The long-range coefficients obtained from the fit are found to be in good agreement with first and second-order perturbation theory calculations.
我们提出了 NH((3)Sigma(-))-NH((3)Sigma(-)) 复合物三种不同自旋态的四维从头算势能面。这些势能面部分基于 Dhont 等人的工作[J. Chem. Phys. 123, 184302 (2005)]。五重态的表面是在 RCCSD(T)/aug-cc-pVTZ 水平的理论上获得的,并且 singlet 和 triplet 态之间的能量差异是在完整的活性空间中用 n 阶微扰理论/aug-cc-pVTZ(n=2,3)水平的理论计算的。从头算势能在角坐标中拟合到耦合的球谐函数,并且长程进一步展开为 1/R 的幂级数。在拟合之前,RCCSD(T)势能被修正了大约 0.5x10(-6) E(h)的大小一致性误差。从拟合中得到的长程系数与一阶和二阶微扰理论计算吻合得很好。