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具有校准交换能密度的局部杂化泛函用于核屏蔽常数的实现与验证

Implementation and Validation of Local Hybrid Functionals with Calibrated Exchange-Energy Densities for Nuclear Shielding Constants.

作者信息

Schattenberg Caspar Jonas, Kaupp Martin

机构信息

Theoretische Chemie/Quantenchemie, Institut für Chemie, Technische Universität Berlin, Sekr. C7, Straße des 17. Juni 135, D-10623 Berlin, Germany.

出版信息

J Phys Chem A. 2021 Apr 1;125(12):2697-2707. doi: 10.1021/acs.jpca.1c01135. Epub 2021 Mar 18.

Abstract

A recently reported coupled-perturbed Kohn-Sham implementation to compute nuclear shielding constants with gauge-including atomic orbitals and local hybrid functionals has been extended to cover higher derivatives of the density in the local mixing function (LMF) of the local hybrid as well as the calibration function (CF) needed to deal with the ambiguity of exchange-energy densities. This allowed the first evaluation of state-of-the-art local hybrids with "calibrated" exchange-energy densities for nuclear shieldings. Compared to previously evaluated simpler local hybrids without a CF, appreciable improvements are found for proton shieldings. Furthermore, the recent LH20t functional is still competitive with the outstanding performance of the uncalibrated LH12ct-SsirSVWN and LH12ct-SsifSVWN LHs for heavier nuclei, suggesting that LH20t is possibly the most robust choice of any rung-four functional for computing the nuclear shieldings of main-group nuclei so far. Interestingly, the presence of a CF in the functional significantly reduces the number of artifacts introduced by the widely used Maximoff-Scuseria framework to treat the local kinetic energy τ. The latter occurs in so-called t-LMFs used in many of the present local hybrids. In any case, the use of Dobson's current-density functional framework is also recommended with more advanced calibrated τ-dependent local hybrid functionals.

摘要

最近报道的一种用于计算核屏蔽常数的耦合微扰Kohn-Sham方法,该方法采用含规范原子轨道和局域杂化泛函,现已扩展到涵盖局域杂化的局域混合函数(LMF)中密度的高阶导数,以及处理交换能密度模糊性所需的校准函数(CF)。这使得首次能够使用“校准”后的交换能密度对核屏蔽进行最先进的局域杂化评估。与之前评估的没有CF的更简单局域杂化相比,质子屏蔽有了显著改进。此外,最近的LH20t泛函在计算重核时,仍与未校准的LH12ct-SsirSVWN和LH12ct-SsifSVWN局域杂化的出色性能相竞争,这表明LH20t可能是目前计算主族核的核屏蔽时所有四级泛函中最稳健的选择。有趣的是,泛函中CF的存在显著减少了广泛使用的Maximoff-Scuseria框架在处理局域动能τ时引入的伪影数量。后者出现在许多当前局域杂化中使用的所谓t-LMF中。无论如何,对于更先进的校准τ依赖的局域杂化泛函,也建议使用Dobson的电流密度泛函框架。

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