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通过先进的从头算计算揭示的有吸引力的PHHP相互作用。

Attractive PHHP interactions revealed by state-of-the-art ab initio calculations.

作者信息

Yourdkhani Sirous, Jabłoński Mirosław, Echeverría Jorge

机构信息

Department of Chemistry, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

出版信息

Phys Chem Chem Phys. 2017 Oct 25;19(41):28044-28055. doi: 10.1039/c7cp04412g.

Abstract

We report in this work a combined structural and state-of-the-art computational study of homopolar P-HH-P intermolecular contacts. Database surveys have shown the abundance of such surprisingly unexplored contacts, which are usually accompanied by other weak interactions in the solid state. By means of a detailed theoretical study utilizing SAPT(DFT), MP2, SCS-MP2, MP2C and CCSD(T) methods and both aug-cc-pVXZ and aug-cc-pCVXZ (X = D, T, Q, 5) basis sets as well as extrapolation to the CBS limit, we have shown that P-HH-P contacts are indeed attractive and considerably strong. SAPT(DFT) calculations have revealed the dispersive nature of the P-HH-P interaction with only minor contribution of the inductive term, whereas the first-order electrostatic term is clearly overbalanced by the first-order exchange energy. In general the computed interaction energies follow the trend: E ≈ E < E < E. Our results have also shown that the aug-cc-pVDZ (or aug-cc-pCVDZ) basis set is not yet well balanced and that the second-order dispersion energy term is the slowest converging among all SAPT(DFT) energy components. Compared to aug-cc-pVXZ basis sets, their core-correlation counterparts have a modest influence on all supermolecular interaction energies and a negligible influence on both the SAPT(DFT) interaction energy and its components.

摘要

我们在这项工作中报告了对同极P-HH-P分子间接触的结构与最新计算相结合的研究。数据库调查表明,这类令人惊讶地未被充分探索的接触大量存在,在固态中它们通常伴随着其他弱相互作用。通过利用SAPT(DFT)、MP2、SCS-MP2、MP2C和CCSD(T)方法以及aug-cc-pVXZ和aug-cc-pCVXZ(X = D、T、Q、5)基组并外推至CBS极限进行详细的理论研究,我们表明P-HH-P接触确实具有吸引力且相当强。SAPT(DFT)计算揭示了P-HH-P相互作用的色散性质,感应项贡献较小,而一阶静电项明显被一阶交换能过度平衡。一般来说,计算得到的相互作用能遵循以下趋势:E ≈ E < E < E。我们的结果还表明,aug-cc-pVDZ(或aug-cc-pCVDZ)基组尚未达到良好的平衡,并且二阶色散能项是所有SAPT(DFT)能量分量中收敛最慢的。与aug-cc-pVXZ基组相比,它们的核心相关对应基组对所有超分子相互作用能有适度影响,对SAPT(DFT)相互作用能及其分量的影响可忽略不计。

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