David Grégoire, Ben Amor Nadia, Zeng Tao, Suaud Nicolas, Trinquier Georges, Malrieu Jean-Paul
University Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes)-UMR 6226, F-35000 Rennes, France.
Laboratoire de Chimie et Physique Quantiques, IRSAMC-CNRS-UMR5626, Université Paul-Sabatier (Toulouse III), 31062 Toulouse Cedex 4, France.
J Chem Phys. 2022 Jun 14;156(22):224104. doi: 10.1063/5.0090129.
C cyclacenes exhibit strong bond-alternation in their equilibrium geometry. In the two equivalent geometries, the system keeps an essentially closed-shell character. The two energy minima are separated by a transition state suppressing the bond-alternation, where the wave function is strongly diradical. This paper discusses the physical factors involved in this energy difference and possible evaluations of the barrier height. The barrier given as the energy difference between the restricted density functional theory (DFT)/B3LYP for the equilibrium and the broken symmetry DFT/B3LYP of the transition state is either negative or small, in contradiction with the most reliable Wave Function Theory calculations. The minimal (two electrons in two molecular orbitals) Complete Active Space self-consistent field (CASSCF) overestimates the barrier, and the subsequent second-order perturbation cancels it. Due to the collective character of the spin-polarization effect, it is necessary to perform a full π CASSCF + second-order perturbation to reach a reasonable value of the barrier, but this type of treatment cannot be applied to large molecules. DFT procedures treating on an equal foot the closed-shell and open-shell geometries have been explored, such as Mixed-Reference Spin-Flip Time-dependent-DFT and a new spin-decontamination proposal, namely, DFT-dressed configuration interaction, but the results still depend on the density functional. M06-2X without or with spin-decontamination gives the best agreement with the accurate wave function results.
C环芳在其平衡几何结构中表现出强烈的键交替。在两种等效几何结构中,体系保持基本的闭壳层特征。两个能量极小值由一个抑制键交替的过渡态隔开,在该过渡态波函数具有很强的双自由基特征。本文讨论了这种能量差所涉及的物理因素以及势垒高度的可能评估。作为平衡态的受限密度泛函理论(DFT)/B3LYP与过渡态的破缺对称性DFT/B3LYP之间的能量差给出的势垒要么为负要么很小,这与最可靠的波函数理论计算结果相矛盾。最小(两个分子轨道中有两个电子)完全活性空间自洽场(CASSCF)高估了势垒,随后的二阶微扰抵消了它。由于自旋极化效应的集体性质,有必要进行全π CASSCF + 二阶微扰以得到合理的势垒值,但这种处理方式不能应用于大分子。已经探索了平等对待闭壳层和开壳层几何结构的DFT程序,如混合参考自旋翻转含时DFT和一种新的自旋净化提议,即DFT修饰的组态相互作用,但结果仍然依赖于密度泛函。不带或带有自旋净化的M06 - 2X与精确的波函数结果最为吻合。