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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Accurate Harmonic/Anharmonic Vibrational Frequencies for Open-Shell Systems: Performances of the B3LYP/ N07D Model for Semirigid Free Radicals Benchmarked by CCSD(T) Computations
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Accurate Harmonic/Anharmonic Vibrational Frequencies for Open-Shell Systems: Performances of the B3LYP/ N07D Model for Semirigid Free Radicals Benchmarked by CCSD(T) Computations

机译:开壳系统的精确谐波/非谐振动频率:B3LYP / N07D模型的半刚性自由基模型的性能以CCSD(T)计算为基准

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摘要

Impressive growth of computer facilities and effective implementation of very accurate quantum mechanical methods allow, nowadays, the determination of structures and vibrational characteristics for small- to medium-sized molecules to a very high accuracy. Since the situation is much less clear for open-shell species, we decided to build a suitable database of harmonic and anharmonic frequencies for small-sized free radicals containing atoms of the first two rows of the periodic table. The level of theory employed is the CCSD(T) model in conjunction with triple- and quadruple-ζ basis sets, whose accuracy has been checked with respect to the available experimental data and/or converged quantum mechanical computations. Next, in view of studies of largeropen-shell systems, we have validated the B3LYP/N07D model with reference to the above database: our results confirm previous suggestions about the remarkable reliability and reduced computational cost of this computational method. A number of test computations show that basis set extension has negligible effects and other density functionals (including last generation ones) deliver significantly worse results. Increased accuracy can be obtained, instead, by using CCSD(T) harmonic frequencies and B3LYP/N07D anharmonic corrections.
机译:如今,计算机设施的迅猛增长和非常精确的量子力学方法的有效实施,使得能够以非常高的精度确定中小型分子的结构和振动特性。由于开壳物种的情况还不太清楚,我们决定为周期表中前两行包含原子的小型自由基建立一个合适的谐波和非谐波频率数据库。所采用的理论水平是CCSD(T)模型以及三重和四重ζ基集,其准确性已根据可用的实验数据和/或聚合量子力学计算进行了检查。接下来,鉴于对大型开壳系统的研究,我们已参考上述数据库验证了B3LYP / N07D模型:我们的结果证实了先前有关此计算方法显着可靠性和降低计算成本的建议。大量测试计算表明,基集扩展的影响可忽略不计,其他密度功能(包括上一代功能)提供的效果明显较差。相反,通过使用CCSD(T)谐波频率和B3LYP / N07D非谐波校正,可以获得更高的精度。

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