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通过使用局域杂化泛函的密度泛函理论计算改进自旋交叉配合物性质的预测

Improving Predictions of Spin-Crossover Complex Properties through DFT Calculations with a Local Hybrid Functional.

作者信息

Rajpurohit Sangeeta, Vennelakanti Vyshnavi, Kulik Heather J

机构信息

Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

J Phys Chem A. 2024 Oct 17;128(41):9082-9089. doi: 10.1021/acs.jpca.4c05046. Epub 2024 Oct 3.

Abstract

We conducted a study on the performance of the local hybrid exchange-correlation functional PBE0r for a set of 95 experimentally characterized iron spin-crossover (SCO) complexes [Vennelakanti, V.; 2023, 159, 024120]. The PBE0r functional is a variant of PBE0 where the exchange correction is restricted to on-site terms formulated on the basis of local orbitals. We determine the free parameters of the PBE0r functional against the experimental data and other hybrid functionals. With a Hartree-Fock (HF) exchange factor of 4%, the PBE0r functional accurately reproduces the electronic and free-energy trends predicted in prior DFT studies for these 95 complexes by using the B3LYP functional. Larger values of HF exchange stabilize high-spin states. The PBE0r-predicted bond lengths tend to exceed the experimental bond lengths, although bond lengths are less sensitive to HF exchange than in global hybrids. The predicted SCO transition temperatures from PBE0r correlate moderately with the experimental transition temperatures, showing a slight improvement compared to the previous modB3LYP-predicted . This study suggests that the PBE0r functional is computationally cost-effective and offers the possibility of simulating larger complexes with accuracy comparable to global hybrid functionals, provided the HF-exchange parameter is carefully optimized.

摘要

我们对局部杂化交换关联泛函PBE0r在一组95个经实验表征的铁自旋交叉(SCO)配合物上的性能进行了研究[Vennelakanti, V.; 2023, 159, 024120]。PBE0r泛函是PBE0的一个变体,其中交换校正仅限于基于局域轨道制定的在位项。我们根据实验数据和其他杂化泛函确定了PBE0r泛函的自由参数。在Hartree-Fock(HF)交换因子为4%的情况下,PBE0r泛函通过使用B3LYP泛函准确地再现了先前DFT研究中对这95个配合物预测的电子和自由能趋势。HF交换值越大,高自旋态越稳定。PBE0r预测的键长往往超过实验键长,尽管键长对HF交换的敏感性低于全局杂化泛函。PBE0r预测的SCO转变温度与实验转变温度适度相关,与先前modB3LYP预测的相比有轻微改善。这项研究表明,PBE0r泛函在计算上具有成本效益,并且只要仔细优化HF交换参数,就有可能以与全局杂化泛函相当的精度模拟更大的配合物。

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