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克服简单芳香体系面外运动关联失败:c-CH 的振转量子化学分析。

Overcoming the Failure of Correlation for Out-of-Plane Motions in a Simple Aromatic: Rovibrational Quantum Chemical Analysis of c-CH.

机构信息

Georgia Southern University , Department of Chemistry & Biochemistry , Statesboro , Georgia 30460 , United States.

University of St. Thomas , Department of Chemsitry , St. Paul , Minnesota 55105 , United States.

出版信息

J Chem Theory Comput. 2018 Apr 10;14(4):2155-2164. doi: 10.1021/acs.jctc.8b00164. Epub 2018 Mar 20.

DOI:10.1021/acs.jctc.8b00164
PMID:29522337
Abstract

Truncated, correlated, wave function methods either produce imaginary frequencies (in the extreme case) or nonphysically low frequencies in out-of-plane motions for carbon and adjacent atoms when the carbon atoms engage in π bonding. Cyclopropenylidene is viewed as the simplest aromatic hydrocarbon, and the present as well as previous theoretical studies have shown that this simple molecule exhibits this behavior in the two out-of-plane bends (OPBs). This nonphysical behavior has been treated by removing nearly linear dependent basis functions according to eigenvalues of the overlap matrix, by employing basis sets where the spd space saturatation is balanced with higher angular momentum functions, by including basis set superposition/incompleteness error (BSSE/BSIE) corrections, or by combining standard correlation methods with explicitly correlated methods to produce hybrid potential surfaces. However, this work supports the recently described hypothesis that the OPB problem is both a method and a basis set effect. The correlated wave function's largest higher-order substitution term comes from a π → π* excitation where constructive interference of both orbitals artificially stabilizes the OPB. By employing schema to overcome this issue, the symmetric OPB ν is the predicted to be the second-brightest transition, and it will be observed very close to 775 cm. However, more work from the community is required to formulate better how carbon atoms interact with their adjacent atoms in π-bonded systems. Such bonds are ubiquitous in all of chemistry and beyond.

摘要

当碳原子参与π键时,截断相关波函数方法要么产生虚频(在极端情况下),要么在面外运动中产生非物理上的低频率,对于碳和相邻原子。环丙烯烯被视为最简单的芳香烃,目前和以前的理论研究表明,这种简单的分子在两个面外弯曲(OPB)中表现出这种行为。这种非物理行为是通过根据重叠矩阵的特征值去除几乎线性相关的基函数来处理的,通过使用 spd 空间饱和与更高角动量函数平衡的基集,通过包括基集叠加/不完整性误差(BSSE/BSIE)校正,或通过将标准相关方法与显式相关方法相结合来产生混合势能表面。然而,这项工作支持了最近描述的假设,即 OPB 问题既是方法又是基集效应。相关波函数的最大高阶替代项来自于π→π*激发,其中两个轨道的建设性干涉人为地稳定了 OPB。通过采用方案来克服这个问题,预测对称 OPB ν 是第二个最亮的跃迁,它将非常接近 775cm 观察到。然而,需要更多的社区工作来更好地描述碳原子如何与它们在π键合系统中的相邻原子相互作用。这种键在化学和超越化学中无处不在。

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