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采用双杂化B2PLYP方法进行谐波与非谐波振动频率计算:解析二阶导数与基准研究

Harmonic and Anharmonic Vibrational Frequency Calculations with the Double-Hybrid B2PLYP Method: Analytic Second Derivatives and Benchmark Studies.

作者信息

Biczysko Malgorzata, Panek Pawel, Scalmani Giovanni, Bloino Julien, Barone Vincenzo

机构信息

Scuola Normale Superiore, piazza dei Cavalieri 7, 56126 Pisa, Italy, Dipartimento di Chimica "Paolo Corradini" and CR-INSTM Village Università di Napoli Federico II, Complesso Univ. Monte S. Angelo, via Cintia, 80126 Napoli, Italy, Faculty of Chemistry, University of Wroclaw, ul. Joliot-Curie 14, 50-383 Wroclaw, Poland, Gaussian, Inc., 340 Quinnipiac St., Bldg 40, Wallingford, Connecticut 06492, and Istituto Nazionale di Fisica Nucleare (INFN), Sezione di Pisa, Pisa, Italy.

出版信息

J Chem Theory Comput. 2010 Jul 13;6(7):2115-25. doi: 10.1021/ct100212p. Epub 2010 Jun 16.

Abstract

This work aims to provide reliable benchmark data on the accuracy of harmonic and anharmonic vibrational frequencies computed with the B2PLYP double-hybrid density functional method. The exchange-correlation contributions required for the B2PLYP analytical second derivatives are presented here, which allow for the effective calculation of harmonic frequency as well as cubic and semidiagonal quartic force fields. The latter, in turn, are necessary to compute the anharmonic vibrational frequencies with the perturbative approach (VPT2). The quality of harmonic vibrational frequencies computed in conjunction with basis sets of double- to quadruple-ζ quality has been checked against reference data from the F38 benchmark set. Then, for an additional set of small closed- and open-shell systems, both harmonic frequencies and anharmonic contributions computed at the B2PLYP/N07D and the B2PLYP/aug-cc-pVTZ levels have been compared to their CCSD(T) counterparts. Moreover, for selected medium-size molecules (furan, pyrrole, thiophene, uracil, anisole, phenol, and pyridine), anharmonic frequencies have been compared to well established experimental results. Such benchmark studies have shown that the B2PLYP/N07D model provides good quality harmonic frequencies and describes correctly anharmonic contributions, the latter being of similar accuracy to their B3LYP/N07D counterparts, but obtained at significantly larger computational cost. Additionally, increased accuracy can be obtained by adopting hybrid models where the B2PLYP/N07D anharmonic contributions are combined with harmonic frequencies computed with more accurate quantum mechanical (QM) approaches or by B2PLYP with larger basis sets. This work confirmed also that most of the recently developed density functionals are significantly less suited for vibrational computations, while the B2PLYP method can be recommended for spectroscopic studies where a good accuracy of vibrational properties is required.

摘要

这项工作旨在提供关于使用B2PLYP双杂化密度泛函方法计算的谐波和非谐波振动频率准确性的可靠基准数据。本文给出了B2PLYP解析二阶导数所需的交换相关贡献,这使得能够有效地计算谐波频率以及立方和半对角四次力场。反过来,后者对于用微扰方法(VPT2)计算非谐波振动频率是必要的。结合双ζ到四ζ质量的基组计算的谐波振动频率的质量已与F38基准集的参考数据进行了核对。然后,对于另外一组小的闭壳层和开壳层体系,在B2PLYP/N07D和B2PLYP/aug-cc-pVTZ水平计算的谐波频率和非谐波贡献都已与其CCSD(T)对应值进行了比较。此外,对于选定的中等大小分子(呋喃、吡咯、噻吩、尿嘧啶、苯甲醚、苯酚和吡啶),非谐波频率已与成熟的实验结果进行了比较。此类基准研究表明,B2PLYP/N07D模型提供了高质量的谐波频率,并正确描述了非谐波贡献,后者的准确性与其B3LYP/N07D对应值相似,但计算成本显著更高。此外,通过采用混合模型可以提高准确性,其中B2PLYP/N07D非谐波贡献与用更精确的量子力学(QM)方法或更大基组的B2PLYP计算的谐波频率相结合。这项工作还证实,大多数最近开发的密度泛函不太适合振动计算,而B2PLYP方法可推荐用于需要振动性质具有良好准确性的光谱研究。

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