首页> 外文期刊>Journal of chemical theory and computation: JCTC >Overcoming the Failure of Correlation for Out-of-Plane Motions in a Simple Aromatic: Rovibrational Quantum Chemical Analysis of c-C3H2
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Overcoming the Failure of Correlation for Out-of-Plane Motions in a Simple Aromatic: Rovibrational Quantum Chemical Analysis of c-C3H2

机译:在简单的芳香族中克服与平面外运动的相关性的相关性:C-C3H2的振动量子化学分析

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摘要

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 pi 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 pi - pi* excitation where constructive interference of both orbitals artificially stabilizes the OPB. By employing schema to overcome this issue, the symmetric OPB v(9) is the predicted to be the second-brightest transition, and it will be observed very close to 775 cm(-1). However, more work from the community is required to formulate better how carbon atoms interact with their adjacent atoms in pi-bonded systems. Such bonds are ubiquitous in all of chemistry and beyond.
机译:当碳原子接合PI键合时,截断,相关的波函数方法在碳和相邻原子中产生假频频率(在极端情况下)或非物理低频。环丙基苯基被视为最简单的芳烃,目前以及先前的理论研究表明,这种简单的分子在两个平面外弯曲(OPB)中表现出这种行为。通过采用基集通过包括较高角动量函数的基础设置,通过包括基于设定的叠加/不完整误差(BSSE / BSIE )校正,或通过将标准相关方法与明确相关的方法组合以产生混合电位表面。但是,这项工作支持最近描述的假设,即OPB问题是一种方法和基础集效果。相关波函数最大的高阶替代术语来自PI - & PI *激发,其中两个轨道的建设性干扰人为人为稳定opb。通过使用架构来克服这个问题,对称OPB V(9)预测是最近最亮的转换,并且将观察到非常接近775cm(-1)。然而,群组中的更多工作是制备更好的碳原子如何与其在PI键合系统中的相邻原子相互作用。这种粘合在所有化学和超越中都是普遍的。

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