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新型密度泛函理论(DFT)和局域相关方法的耦合簇基准测试:Ru(II, III) 羰基氯化物催化的氢芳基化和氧化偶联反应机理

Coupled Cluster Benchmark of New DFT and Local Correlation Methods: Mechanisms of Hydroarylation and Oxidative Coupling Catalyzed by Ru(II, III) Chloride Carbonyls.

作者信息

Efremenko Irena, Martin Jan M L

机构信息

Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science, 7610001 Rehovot, Israel.

出版信息

J Phys Chem A. 2021 Oct 14;125(40):8987-8999. doi: 10.1021/acs.jpca.1c05124. Epub 2021 Sep 29.

DOI:10.1021/acs.jpca.1c05124
PMID:34586809
Abstract

We have evaluated a set of accurate canonical CCSD(T) energies for stationary points on the potential energy surface for Ru(II, III) chloride carbonyl catalysis of two competing reactions between benzene and methyl acrylate (MA), namely, hydroarylation and oxidative coupling. We have then applied this set to evaluate the performance of localized orbital coupled-cluster methods and several new and common density functionals. We find that (a) DLPNO-CCSD(T) with TightPNO cutoffs is an acceptable substitute for full canonical CCSD(T) calculations on this system; (b) for the closed-shell systems where it could be applied, LNO-CCSD(T) with tight convergence criteria is very close to the canonical results; (c) the recent ωB97X-V and ωB97M-V functionals exhibit superior performance to commonly used DFT functionals in both closed- and open-shell calculations; (d) the revDSD-PBEP86 revision of the DSD-PBEP86 double hybrid represents an improvement over the original, even though transition metals were not involved in its parametrization; and (e) DSD-SCAN and DOD-SCAN show comparable efficiency. Most tested (meta)-GGA and hybrid density functionals perform better for open-shell than for closed-shell complexes; this is not the case for the double hybrids considered.

摘要

我们评估了一组精确的规范CCSD(T)能量,用于Ru(II, III)氯化物羰基催化苯与丙烯酸甲酯(MA)之间两个竞争反应(即氢芳基化和氧化偶联)势能面上的驻点。然后,我们应用这组能量来评估定域轨道耦合簇方法以及几种新的和常用的密度泛函的性能。我们发现:(a) 采用TightPNO截止值的DLPNO-CCSD(T)是该体系全规范CCSD(T)计算的可接受替代方法;(b) 对于可应用的闭壳层体系,采用严格收敛标准的LNO-CCSD(T)与规范结果非常接近;(c) 最近的ωB97X-V和ωB97M-V泛函在闭壳层和开壳层计算中均表现出优于常用DFT泛函的性能;(d) DSD-PBEP86双杂化泛函的revDSD-PBEP86修订版相较于原版有所改进,尽管其参数化过程未涉及过渡金属;(e) DSD-SCAN和DOD-SCAN表现出相当的效率。大多数测试的(元)广义梯度近似(GGA)和杂化密度泛函对开壳层配合物的表现优于闭壳层配合物;但所考虑的双杂化泛函并非如此。

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