Departamento de Química y Física Teoricas, I. Estructura de la Materia, IEM-CSIC, Serrano 121, Madrid 28006, Spain.
J Phys Chem A. 2012 Jun 28;116(25):6901-10. doi: 10.1021/jp3030107. Epub 2012 Jun 8.
From a vibrationally corrected 3D potential energy surface determined with highly correlated ab initio calculations (CCSD(T)), the lowest vibrational energies of two dimethyl-ether isotopologues, (12)CH(3)-(16)O-(12)CD(3) (DME-d(3)) and (12)CD(3)-(16)O-(12)CD(3) (DME-d(6)), are computed variationally. The levels that can be populated at very low temperatures correspond to the COC-bending and the two methyl torsional modes. Molecular symmetry groups are used for the classification of levels and torsional splittings. DME-d(6) belongs to the G(36) group, as the most abundant isotopologue (12)CH(3)-(16)O-(12)CH(3) (DME-h(6)), while DME-d(3) is a G(18) species. Previous assignments of experimental Raman and far-infrared spectra are discussed from an effective Hamiltonian obtained after refining the ab initio parameters. Because a good agreement between calculated and experimental transition frequencies is reached, new assignments are proposed for various combination bands corresponding to the two deuterated isotopologues and for the 020 → 030 transition of DME-d(6). Vibrationally corrected potential energy barriers, structural parameters, and anharmonic spectroscopic parameters are provided. For the 3N - 9 neglected vibrational modes, harmonic and anharmonic fundamental frequencies are obtained using second-order perturbation theory by means of CCSD and MP2 force fields. Fermi resonances between the COC-bending and the torsional modes modify DME-d(3) intensities and the band positions of the torsional overtones.
从通过高度相关的从头算(CCSD(T))确定的振动校正的 3D 势能表面,计算了两种二甲醚同位素(12)CH(3)-(16)O-(12)CD(3)(DME-d(3))和(12)CD(3)-(16)O-(12)CD(3)(DME-d(6))的最低振动能。可以在极低温度下填充的能级对应于 COC 弯曲和两个甲基扭转模式。分子对称群用于能级和扭转分裂的分类。DME-d(6)属于 G(36)群,因为最丰富的同位素(12)CH(3)-(16)O-(12)CH(3)(DME-h(6)),而 DME-d(3)是 G(18)物种。从经过从头算参数修正后获得的有效哈密顿量讨论了实验拉曼和远红外光谱的先前分配。由于计算和实验跃迁频率之间达到了很好的一致性,因此为两种氘代同位素和 DME-d(6)的 020→030 跃迁的各种组合带提出了新的分配。提供了振动校正的势能势垒、结构参数和非谐光谱参数。对于 3N-9 个忽略的振动模式,使用 CCSD 和 MP2 力场的二阶微扰理论获得了谐和和非谐基本频率。COC 弯曲和扭转模式之间的费米共振改变了 DME-d(3)的强度和扭转泛音的带位置。