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(HCOOH)和(DCOOH)的红外光谱:实验、VSCF/VCI以及使用全维势能和偶极矩面的从头算分子动力学计算

IR Spectra of (HCOOH) and (DCOOH): Experiment, VSCF/VCI, and Ab Initio Molecular Dynamics Calculations Using Full-Dimensional Potential and Dipole Moment Surfaces.

作者信息

Qu Chen, Bowman Joel M

机构信息

Department of Chemistry and Cherry L. Emerson Center for Scientific Computation , Emory University , Atlanta , Georgia 30322 , United States.

出版信息

J Phys Chem Lett. 2018 May 17;9(10):2604-2610. doi: 10.1021/acs.jpclett.8b00447. Epub 2018 May 4.

Abstract

We report quantum VSCF/VCI and ab initio molecular dynamics (AIMD) calculations of the IR spectra of (HCOOH) and (DCOOH), using full-dimensional, ab initio potential energy and dipole moment surfaces (PES and DMS). These surfaces are fits, using permutationally invariant polynomials, to 13 475 ab initio CCSD(T)-F12a electronic energies and MP2 dipole moments. Here "AIMD" means using these ab initio potential and dipole moment surfaces in the MD calculations. The VSCF/VCI calculations use all (24) normal modes for coupling, with a four-mode representation of the potential. The quantum spectra align well with jet-cooled and room-temperature experimental spectra over the spectral range 600-3600 cm. Analyses of the complex O-H and C-H stretch bands are made based on the mixing of the VSCF/VCI basis functions. The comparisons of the AIMD IR spectra with both experimental and VSCF/VCI ones provide tests of the accuracy of the AIMD approach. These indicate good accuracy for simple bands but not for the complex O-H stretch band, which is upshifted from experimental and VSCF/VCI bands by roughly 300 cm. In addition to testing the AIMD approach, the PES, DMS, and VSCF/VCI calculations for formic acid dimer provide opportunities for testing other methods to represent high-dimensional data and other methods that perform postharmonic vibrational calculations.

摘要

我们报告了使用全维从头算势能面和偶极矩面(PES和DMS)对(HCOOH)和(DCOOH)的红外光谱进行的量子VSCF/VCI和从头算分子动力学(AIMD)计算。这些表面是使用置换不变多项式对13475个从头算CCSD(T)-F12a电子能量和MP2偶极矩进行拟合得到的。这里“AIMD”是指在分子动力学计算中使用这些从头算势能面和偶极矩面。VSCF/VCI计算使用所有(24个)简正模式进行耦合,采用势能的四模式表示。量子光谱在600 - 3600 cm的光谱范围内与喷射冷却和室温实验光谱吻合良好。基于VSCF/VCI基函数的混合对复杂的O - H和C - H伸缩带进行了分析。将AIMD红外光谱与实验光谱和VSCF/VCI光谱进行比较,对AIMD方法的准确性进行了检验。结果表明,对于简单谱带,该方法具有良好的准确性,但对于复杂的O - H伸缩带则不然,该谱带相对于实验光谱和VSCF/VCI光谱上移了约300 cm。除了检验AIMD方法外,甲酸二聚体的PES、DMS和VSCF/VCI计算为检验其他表示高维数据的方法以及其他进行谐波后振动计算的方法提供了机会。

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