Addressing Anharmonic Effects with Density-Fitted Multicomponent Density Functional Theory.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry A Pub Date : 2025-04-17 Epub Date: 2025-04-07 DOI:10.1021/acs.jpca.5c00382
Lukas Hasecke, Maximilian Breitenbach, Martí Gimferrer, Rainer Oswald, Ricardo A Mata
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Abstract

In this contribution we present the first local density-fitted multicomponent density functional theory implementation and assess its use for the calculation of anharmonic zero-point energies. Four challenging cases of molecular aggregates are reviewed: deprotonated formic acid trimer, diphenyl ether-tert-butyl alcohol conformers, anisole/methanol and anisole/2-naphtol dimers. These are all cases where a mismatch between the low-temperature computationally predicted minimum and the experimentally determined structure was observed. Through the use of nuclear-electronic orbital energies in the thermodynamic correction, the correct energetic ordering is recovered. For the smallest system, we compare our results to vibrational perturbation theory anharmonically corrected zero-point energy, with perfect agreement for the lower-lying conformers. The performance of the newly developed code and the density fitting errors are also analyzed. Overall, the new implementation shows a very good scaling with system size and the density fitting approximations exhibit a negligible impact.

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用密度拟合多分量密度泛函理论求解非调和效应。
在这篇贡献中,我们提出了第一个局部密度拟合多分量密度泛函理论的实现,并评估了它在计算非调和零点能量方面的应用。综述了四种具有挑战性的分子聚集体:去质子甲酸三聚体、二苯基醚-叔丁醇构象、苯甲醚/甲醇和苯甲醚/2-萘酚二聚体。这些都是在低温计算预测的最小值和实验确定的结构之间观察到不匹配的所有情况。通过在热力学修正中使用核电子轨道能,恢复了正确的能序。对于最小的系统,我们将我们的结果与振动微扰理论的非调和修正零点能量进行比较,与较低的构象完全一致。分析了新编码的性能和密度拟合误差。总的来说,新的实现显示出非常好的系统大小缩放,密度拟合近似值的影响可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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