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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Basis Sets for the Evaluation of van der Waals Complex Interaction Energies: Ne–N_2 Intermolecular Potential and Microwave Spectrum
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Basis Sets for the Evaluation of van der Waals Complex Interaction Energies: Ne–N_2 Intermolecular Potential and Microwave Spectrum

机译:Van der Waals复杂相互作用能评估的基础集:Ne–N_2分子间电势和微波光谱

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In order to obtain efficient basis sets for the evaluation of van der Waals complex intermolecular potentials, we carry out systematic basis set studies. For this, interaction energies at representative geometries on the potential energy surfaces are evaluated using the CCSD(T) correlation method and large polarized LPol-n and augmented polarization-consistent augpc-2 basis sets extended with different sets of midbond functions. On the basis of the root mean square errors calculated with respect to the values for the most accurate potentials available, basis sets are selected for fitting the corresponding interaction energies and getting analytical potentials. In this work, we study the Ne–N_2 van der Waals complex and after the above procedure, the aug-pc-2–3321 and the LPol-ds-33221 basis set results are fitted. The obtained potentials are characterized by T-shaped global minima at distances between the Ne atom and the N_2 center of mass of 3.39 ?, with interaction energies of 249.36 cm~(-1) for the aug-pc-2–3321 surface and 250.28 cm~(-1) for the LPol-ds-33221 surface. Both sets of results are in excellent agreement with the reference surface. To check the potentials further microwave transition frequencies are calculated that agree well with the experimental and the aV5Z-33221 values. The success of this study suggests that it is feasible to carry out similar accurate calculations of interaction energies and ro-vibrational spectra at reduced cost for larger complexes than has been possible hitherto. VC 2013 Wiley Periodicals, Inc.
机译:为了获得评估范德华力分子间潜能的有效基础集,我们进行了系统的基础集研究。为此,使用CCSD(T)相关方法以及使用不同中键功能集扩展的大极化LPol-n和增强极化一致augpc-2基集,评估势能表面上具有代表性几何形状的相互作用能。基于相对于可用的最准确电势的值计算出的均方根误差,选择基础集以拟合相应的相互作用能并获得分析电势。在这项工作中,我们研究了Ne–N_2 van der Waals配合物,经过上述过程之后,拟合了aug-pc-2–3321和LPol-ds-33221基集结果。所获得的电势的特征是,Ne原子和N_2质心之间的距离为3.39?的T形全局最小值,aug-pc-2–3321表面和250.28的相互作用能为249.36 cm〜(-1) LPol-ds-33221表面的cm〜(-1)。两组结果均与参考表面极为吻合。为了检查电势,进一步计算了与实验值和aV5Z-33221值相符的微波跃迁频率。这项研究的成功表明,对于比迄今可能的更大的复合物,以更低的成本进行相似的相互作用能和旋转振动光谱的精确计算是可行的。 VC 2013 Wiley期刊公司

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