首页> 外文期刊>The Journal of Chemical Physics >THE ANHARMONIC FORCE FIELD OF ETHYLENE, C2H4, BY MEANS OF ACCURATE AB INITIO CALCULATIONS
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THE ANHARMONIC FORCE FIELD OF ETHYLENE, C2H4, BY MEANS OF ACCURATE AB INITIO CALCULATIONS

机译:精确的从头算法计算乙烯C2H4的无烟力场

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The quartic force field of ethylene, C2H4, has been calculated ab initio using augmented coupled cluster, CCSD(T), methods and correlation consistent basis sets of spdf quality. For the C-12 isotopomers C2H4, C2H3D, H2CCD2, cis-C2H2D2, trans-C2H2D2, C2HD3, and C2D4, all fundamentals are reproduced to better than 10 cm(-1), except for three cases where the error is 11 cm(-1). Our calculated harmonic frequencies suggest a thorough revision of the accepted cm experimentally derived values. Our computed and empirically corrected r(e) geometry differs substantially from experimentally derived values: Both the predicted r(z) geometry and the ground-state rotational constants are, however, in excellent agreement with experiment, suggesting revision of the older values. Anharmonicity constants agree well with experiment for stretches, but differ substantially for stretch-bend interaction constants, due to equality constraints in the experimental analysis that do not hold. Improved criteria for detecting Fermi and Coriolis resonances are proposed and found to work well, contrary to the established method based on harmonic frequency differences that fails to detect several important resonances for C2H4 and its isotopomers. Surprisingly good results are obtained with a small spd basis at the CCSD(T) level. The well-documented strong basis set effect on the v(8) out-of-plane motion is present to a much lesser extent when correlation-optimized polarization functions are used. Complete sets of anharmonic, rovibrational coupling, and centrifugal distortion constants for the isotopomers are available as supplementary material to the paper via the World-Wide Web. (C) 1995 American Institute of Physics. [References: 85]
机译:乙烯C2H4的四次力场是使用增强耦合簇CCSD(T),方法和spdf质量的相关一致基集从头计算的。对于C-12异构体C2H4,C2H3D,H2CCD2,顺式C2H2D2,反式C2H2D2,C2HD3和C2D4,所有基本原理均优于10 cm(-1),但三种情况的误差为11 cm( -1)。我们计算出的谐波频率建议对接受的cm实验得出的值进行彻底修改。我们计算并经经验校正的r(e)几何形状与实验得出的值有很大不同:但是,预测的r(z)几何形状和基态旋转常数均与实验非常吻合,建议对较旧的值进行修订。非拉伸常数与拉伸实验非常吻合,但拉伸-弯曲相互作用常数却大不相同,这是由于实验分析中的等式约束不成立。提出了改进的检测费米和科里奥利共振的标准,并且发现该标准行之有效,这与基于谐波频率差的既定方法相反,该方法未能检测出C2H4及其异构体的几个重要共振。令人惊讶的是,在CCSD(T)级别上以较小的spd获得了良好的结果。当使用相关优化的极化函数时,对v(8)平面外运动的有据可查的强基础集影响要小得多。异构体的全套非谐,振动耦合和离心变形常数可作为补充材料通过万维网获得。 (C)1995年美国物理研究所。 [参考:85]

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