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ASSIGNMENT OF THE FUNDAMENTAL FREQUENCIES OF PARA-BENZOQUINONE - A SCALED QUANTUM-MECHANICAL FORCE-FIELD STUDY
被引:41
作者:
LIU, RF
[1
]
ZHOU, XF
[1
]
PULAY, P
[1
]
机构:
[1] UNIV ARKANSAS, DEPT CHEM & BIOCHEM, FAYETTEVILLE, AR 72701 USA
关键词:
D O I:
10.1021/j100190a028
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
The recently developed unrestricted Hartree-Fock natural orbital-complete active space (UNO-CAS) method is applied to the determination of the geometry and force field of p-benzoquinone. With an active space consisting of eight electrons distributed in eight-pi orbitals (8 x 8) and the 6-31G* basis set, UNO-CAS predicts CC and CO distances in good agreement with gas electron diffraction results. The full quadratic force field is obtained by an empirical scaling of the 8 x 8 UNO-CAS/4-21G force constants evaluated at the 6-31G* UNO-CAS geometry. This force field produces frequencies in good agreement with reliable experimental results. Based on the calculations a positive assignment of all fundamentals of p-benzoquinone is given. The in-phase and out-of-phase C = O and C = C coupled stretching fundamentals are confirmed to be at 1665 and 1614 cm-1. The two a(u) modes are predicted to be at 1004 and 298 cm-1, and the lowest b3u mode nu(26) is predicted to be at 88 cm-1. These predictions are in excellent agreement with the latest experimental results. The fundamental frequencies of the D2h symmetry isotopomers of p-benzoquinone are also calculated and compared with experiments. Some of the isotopomer fundamentals are reassigned. The UNO-CAS method is shown superior to RHF in predicting equilibrium geometries and quantum mechanical force fields in strongly correlated systems like quinone.
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页码:4255 / 4261
页数:7
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