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Global ab initio potential energy surface for the O2( 3∑g -) + N2(1∑ g +) interaction. applications to the collisional, spectroscopic, and thermodynamic properties of the complex

机译:O2(3∑g-)+ N2(1∑ g +)相互作用的全局从头算势面。应用于配合物的碰撞,光谱和热力学性质

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摘要

A detailed characterization of the interaction between the most abundant molecules in air is important for the understanding of a variety of phenomena in atmospherical science. A completely ab initio global potential energy surface (PES) for the O2(3∑g -) + N 2(1∑g +) interaction is reported for the first time. It has been obtained with the symmetry-adapted perturbation theory utilizing a density functional description of monomers [SAPT(DFT)] extended to treat the interaction involving high-spin open-shell complexes. The computed interaction energies of the complex are in a good agreement with those obtained by using the spin-restricted coupled cluster methodology with singles, doubles, and noniterative triple excitations [RCCSD(T)]. A spherical harmonics expansion of the interaction potential containing a large number of terms due to the anisotropy of the interaction has been built from the ab initio data. The expansion coefficients, which are functions of the intermolecular distance, are matched in the long-range with the analytical functions based on the recent ab initio calculations of the electric properties of the monomers [ M. Bartolomei et al. J. Comput. Chem. 2011, 32, 279 ]. The PES is tested against the second virial coefficient B(T) data and the integral cross sections measured with rotationally hot effusive beams, leading in both cases to a very good agreement. The lowest lying states of the complex have been computed and relevant spectroscopic features of the interacting complex are reported. A comparison with a previous experimentally derived PES is also provided. © 2014 American Chemical Society.
机译:空气中最丰富的分子之间相互作用的详细表征对于理解大气科学中的各种现象很重要。首次报道了O2(3∑g-)+ N 2(1∑g +)相互作用的完全从头算起的全局势能面(PES)。它是通过对称适应的扰动理论获得的,该理论利用单体的密度泛函[SAPT(DFT)]进行了扩展,以处理涉及高自旋开壳络合物的相互作用。配合物的计算相互作用能与通过使用具有单,双和非迭代三重激发[RCCSD(T)]的自旋限制性耦合簇方法获得的能量非常一致。从头算数据已经建立了由于相互作用的各向异性而包含大量项的相互作用势的球谐展开。分子间距离的函数即膨胀系数,根据最近对单体电学性质的从头算的计算,与分析函数进行了长距离匹配[M. Bartolomei等。 J.计算机化学2011,32,279]。针对第二维里系数B(T)数据和用旋转热喷流梁测量的积分横截面测试了PES,在两种情况下均取得了很好的一致性。已计算出复合物的最低躺卧状态,并报告了相互作用的复合物的相关光谱特征。还提供了与先前实验得出的PES的比较。 ©2014美国化学学会。

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