首页> 外文期刊>The Journal of Chemical Physics >Ab initio calculation of the NH((3)Sigma(-))-NH((3)Sigma(-)) interaction potentials in the quintet, triplet, and singlet states
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Ab initio calculation of the NH((3)Sigma(-))-NH((3)Sigma(-)) interaction potentials in the quintet, triplet, and singlet states

机译:五重态,三重态和单重态的NH((3)Sigma(-))-NH((3)Sigma(-))相互作用势从头算

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We present the ab initio potential-energy surfaces of the NH-NH complex that correlate with two NH molecules in their (3)Sigma(-) electronic ground state. Three distinct potential-energy surfaces, split by exchange interactions, correspond to the coupling of the S-A=1 and S-B=1 electronic spins of the monomers to dimer states with S=0, 1, and 2. Exploratory calculations on the quintet (S=2), triplet (S=1), and singlet (S=0) states and their exchange splittings were performed with the valence bond self-consistent-field method that explicitly accounts for the nonorthogonality of the orbitals on different monomers. The potential surface of the quintet state, which can be described by a single Slater determinant reference function, was calculated at the coupled cluster level with single and double excitations and noniterative treatment of the triples. The triplet and singlet states require multiconfiguration reference wave functions and the exchange splittings between the three potential surfaces were calculated with the complete active space self-consistent-field method supplemented with perturbative configuration interaction calculations of second and third orders. Full potential-energy surfaces were computed as a function of the four intermolecular Jacobi coordinates, with an aug-cc-pVTZ basis on the N and H atoms and bond functions at the midpoint of the intermolecular vector R. An analytical representation of these potentials was given by expanding their dependence on the molecular orientations in coupled spherical harmonics, and representing the dependence of the expansion coefficients on the intermolecular distance R by the reproducing kernel Hilbert space method. The quintet surface has a van der Waals minimum of depth D-e=675 cm(-1) at R-e=6.6a(0) for a linear geometry with the two NH electric dipoles aligned. The singlet and triplet surfaces show similar, slightly deeper, van der Waals wells, but when R is decreased the weakly bound NH dimer with S=0 and S=1 converts into the chemically bound N2H2 diimide (also called diazene) molecule with only a small energy barrier to overcome. (c) 2005 American Institute of Physics.
机译:我们介绍了NH-NH复杂的从头算势能表面,其与两个处于(3)Sigma(-)电子基态的NH分子相关。通过交换相互作用分裂的三个不同的势能表面,对应于单体的SA = 1和SB = 1电子自旋与S = 0、1和2的二聚体状态的耦合。关于五重态的探索性计算(S = 2),三重态(S = 1)和单重态(S = 0)以及它们的交换分裂是通过价键自洽场方法执行的,该方法明确考虑了不同单体上轨道的非正交性。五重态的潜在表面可以用单个Slater行列式参考函数来描述,它是在耦合簇水平下通过单次和两次激发以及对三元组的非迭代处理来计算的。三重态和单重态需要多重构型参考波函数,并且用完整的有源空间自洽场方法以及第二和第三阶微扰构型相互作用计算来计算三个势面之间的交换分裂。根据四个分子间Jacobi坐标计算完整的势能表面,并基于N和H原子以aug-cc-pVTZ和分子间向量R的中点处的键函数为基础。这些势的解析表示为通过扩展它们对耦合的球谐函数中分子取向的依赖性而给出,并通过再现核Hilbert空间方法表示扩展系数对分子间距离R的依赖性。五重奏表面在两个NH电偶极对齐的线性几何结构中,R-e = 6.6a(0)处的范德华最小深度为D-e = 675 cm(-1)。单重态和三重态表面显示出相似的,稍深的范德华斯井,但是当R降低时,S = 0和S = 1的弱结合NH二聚体转化为化学键合的N2H2二酰亚胺(也称为重氮)分子,只有一个克服小的能量障碍。 (c)2005年美国物理研究所。

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