虚假关系
密度泛函理论
网络拓扑
耦合簇
拓扑(电路)
色散(光学)
从头算
计算机科学
标杆管理
功能(生物学)
星团(航天器)
统计物理学
计算化学
物理
分子
化学
量子力学
数学
机器学习
业务
组合数学
营销
操作系统
进化生物学
程序设计语言
生物
作者
Miquel Torrent‐Sucarrat,Sara Navarro,Fernando P. Cossío,Josep M. Anglada,Josep M. Luis
摘要
Meso‐aryl expanded porphyrins present a structural versatility that allows them to achieve different topologies with distinct aromaticities. Several studies appeared in the literature studying these topological switches from an experimental and theoretical point of view. Most of these publications include density functional theory calculations, being the B3LYP the most used methodology. In this work, we show that the selection of the functional has a critical role on the geometric, energetic, and magnetic results of these expanded porphyrins, and that the use of an inadequate methodology can even generate spurious stationary points on the potential energy surface. To illustrate these aspects, in this article we have studied different molecular distortions of two expanded porphyrins, [32]‐heptaphyrin and [26]‐hexaphyrin using 11 DFT functionals and performing single point energy calculations at the local pair natural orbital coupled cluster DLPNO‐CCSD(T) method, which have been carried out for benchmarking purposes. For some selected functionals, the dispersion effects have also been evaluated using the D3‐Grimme's dispersion correction with Becke–Johnson damping. Our results let us to conclude that the CAM‐B3LYP, M05‐2X, and M06‐2X functionals are the methodologies that provide a more consistent description of these topological switches, while other methods, such as B3LYP, BPE, and BP86, show a biased description. © 2017 Wiley Periodicals, Inc.
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