Convergent Concordant Mode Approach for Molecular Vibrations: CMA-2.

IF 5.5 1区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Chemical Theory and Computation Pub Date : 2024-12-24 Epub Date: 2024-12-13 DOI:10.1021/acs.jctc.4c01240
Nathaniel L Kitzmiller, Mitchell E Lahm, Laura N Olive Dornshuld, Jincan Jin, Wesley D Allen, Henry F Schaefer Iii
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Abstract

The concordant mode approach (CMA) is a promising new scheme for dramatically increasing the system size and level of theory achievable in quantum chemical computations of molecular vibrational frequencies. Here, we achieve advances in the CMA hierarchy by computations targeting CCSD(T)/cc-pVTZ (coupled cluster singles and doubles with perturbative triples using a correlation-consistent polarized-valence triple-ζ basis set) benchmarks within the G2 molecular test set, executing a statistical analysis for 1501 frequencies from 111 compounds and then separately solving the refractory case of pyridine. First, MP2/cc-pVTZ (second-order Møller-Plesset perturbation theory with the same basis set) proves to be an excellent and preferred choice for generating the underlying (Level B) normal modes of the CMA scheme. Utilizing this Level B within the CMA-0A method reproduces the 1501 benchmark frequencies with a mean absolute error (MAE) of only 0.11 cm-1 and an attendant standard deviation of 0.49 cm-1. Second, a convergent CMA-2 method is constituted that allows efficient computation of higher level (Level A) frequencies to any reasonable accuracy threshold by using only Hartree-Fock (HF) and MP2 or density functional theory (DFT) data to generate ξ parameters, which select the sparse off-diagonal force field elements for explicit evaluation at Level A. When Level B = MP2/cc-pVTZ, a cutoff of ξ = 0.02 provides an average maximum absolute error per molecule of only 0.17 cm-1 by incurring merely a 33% increase in average cost over CMA-0A. This CMA-2 method also eradicates the 4 problematic CMA-0A outliers of pyridine with even less effort (ξ = 0.04, 22% increase). Finally, the newly developed CMA procedures are shown to be highly successful when applied to 1-(1H-pyrrol-3-yl)ethanol, a new test molecule with diverse types of vibration.

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分子振动的收敛调和模方法:CMA-2。
在分子振动频率的量子化学计算中,调和模方法(CMA)是一种很有前途的新方案,可以显著提高系统的大小和理论水平。在这里,我们通过计算G2分子测试集中的CCSD(T)/cc-pVTZ(使用相关一致的极化价三重-ζ基集的扰动三重组耦合簇单和双)基准,对111个化合物的1501个频率进行统计分析,然后分别解决吡啶的难解情况,实现了CMA等级的进展。首先,MP2/cc-pVTZ(具有相同基集的二阶Møller-Plesset摄动理论)被证明是生成CMA方案底层(B级)正态模态的最佳选择。在CMA-0A方法中利用该级别B再现1501基准频率,平均绝对误差(MAE)仅为0.11 cm-1,伴随的标准偏差为0.49 cm-1。其次,构建了一种收敛的CMA-2方法,仅使用hartri - fock (HF)和MP2或密度泛函理论(DFT)数据生成ξ参数,将更高级别(a级)频率高效计算到任何合理的精度阈值,ξ参数选择稀疏的非对角力场单元用于显式评估a级。截断值为ξ = 0.02时,每分子的平均最大绝对误差仅为0.17 cm-1,平均成本仅比CMA-0A增加33%。这种CMA-2方法更省力地消除了吡啶的4个有问题的CMA-0A异常值(ξ = 0.04,增加22%)。最后,新开发的CMA程序在应用于具有不同振动类型的新测试分子1-(1h -吡咯-3-基)乙醇时显示出高度成功。
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来源期刊
Journal of Chemical Theory and Computation
Journal of Chemical Theory and Computation 化学-物理:原子、分子和化学物理
CiteScore
9.90
自引率
16.40%
发文量
568
审稿时长
1 months
期刊介绍: The Journal of Chemical Theory and Computation invites new and original contributions with the understanding that, if accepted, they will not be published elsewhere. Papers reporting new theories, methodology, and/or important applications in quantum electronic structure, molecular dynamics, and statistical mechanics are appropriate for submission to this Journal. Specific topics include advances in or applications of ab initio quantum mechanics, density functional theory, design and properties of new materials, surface science, Monte Carlo simulations, solvation models, QM/MM calculations, biomolecular structure prediction, and molecular dynamics in the broadest sense including gas-phase dynamics, ab initio dynamics, biomolecular dynamics, and protein folding. The Journal does not consider papers that are straightforward applications of known methods including DFT and molecular dynamics. The Journal favors submissions that include advances in theory or methodology with applications to compelling problems.
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