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通过高水平从头算研究全氟丙烷二聚体分子间相互作用的大小和取向依赖性:与丙烷二聚体的比较。

Magnitude and orientation dependence of intermolecular interaction of perfluoropropane dimer studied by high-level ab initio calculations: comparison with propane dimer.

作者信息

Tsuzuki Seiji, Uchimaru Tadafumi, Mikami Masuhiro, Urata Shingo

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki 305-8568, Japan.

出版信息

J Chem Phys. 2004 Nov 22;121(20):9917-24. doi: 10.1063/1.1809603.

DOI:10.1063/1.1809603
PMID:15549865
Abstract

Intermolecular interaction energies of 12 orientations of C(3)F(8) dimers were calculated with electron correlation correction by the second-order Møller-Plesset perturbation method. The antiparallel C(2h) dimer has the largest interaction energy (-1.45 kcal/mol). Electron correlation correction increases the attraction considerably. Electrostatic energy is not large. Dispersion is mainly responsible for the attraction. Orientation dependence of the interaction energy of the C(3)F(8) dimer is substantially smaller than that of the C(3)H(8) dimer. The calculated interaction energy of the C(3)F(8) dimer at the potential minimum is 78% of that of the C(3)H(8) dimer (-1.85 kcal/mol), whereas the interaction energies of the CF(4) and C(2)F(6) dimers are larger than those of the CH(4) and C(2)H(6) dimers. The intermolecular separation in the C(3)F(8) dimer at the potential minimum is substantially larger than that in the C(3)H(8) dimer. The larger intermolecular separation due to the steric repulsion between fluorine atoms is the cause of the smaller interaction energy of the C(3)F(8) dimer at the potential minimum. The calculated intermolecular interaction energy potentials of the C(3)F(8) dimers using an all atom model OPLS-AA (OPLS all atom model) force field and a united atom model force field were compared with the ab initio calculations. Although the two force fields well reproduces the experimental vapor and liquid properties of perfluoroalkenes, the comparison shows that the united atom model underestimates the potential depth and orientation dependence of the interaction energy. The potentials obtained by the OPLS-AA force field are close to those obtained by the ab initio calculations.

摘要

采用二阶Møller-Plesset微扰方法,通过电子相关校正计算了C(3)F(8)二聚体12种取向的分子间相互作用能。反平行C(2h)二聚体具有最大的相互作用能(-1.45千卡/摩尔)。电子相关校正显著增加了吸引力。静电能不大。色散是吸引力的主要原因。C(3)F(8)二聚体相互作用能的取向依赖性明显小于C(3)H(8)二聚体。计算得到的C(3)F(8)二聚体在势能最低点的相互作用能是C(3)H(8)二聚体(-1.85千卡/摩尔)的78%,而CF(4)和C(2)F(6)二聚体的相互作用能大于CH(4)和C(2)H(6)二聚体。C(3)F(8)二聚体在势能最低点的分子间间距明显大于C(3)H(8)二聚体。氟原子间空间排斥导致的较大分子间间距是C(3)F(8)二聚体在势能最低点相互作用能较小的原因。将使用全原子模型OPLS-AA(OPLS全原子模型)力场和联合原子模型力场计算得到的C(3)F(8)二聚体的分子间相互作用能势与从头算结果进行了比较。尽管这两种力场都能很好地再现全氟烯烃的实验气相和液相性质,但比较结果表明联合原子模型低估了相互作用能的势阱深度和取向依赖性。OPLS-AA力场得到的势与从头算结果接近。

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