首页> 外文期刊>The Journal of Chemical Physics >Systematic description of molecular deformations with Cremer-Pople puckering and deformation coordinates utilizing analytic derivatives: Applied to cycloheptane, cyclooctane, and cyclo[18]carbon
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Systematic description of molecular deformations with Cremer-Pople puckering and deformation coordinates utilizing analytic derivatives: Applied to cycloheptane, cyclooctane, and cyclo[18]carbon

机译:利用分析衍生物的碎屑 - 皮卡褶皱和变形坐标的分子变形的系统描述:施加到环庚烷,环辛烷和环核[18]碳

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摘要

The conformational properties of ring compounds such as cycloalkanes determine to a large extent their stability and reactivity. Therefore, the investigation of conformational processes such as ring inversion and/or ring pseudorotation has attracted a lot of attention over the past decades. An in-depth conformational analysis of ring compounds requires mapping the relevant parts of the conformational energy surface at stationary and also at non-stationary points. However, the latter is not feasible by a description of the ring with Cartesian or internal coordinates. We provide in this work, a solution to this problem by introducing a new coordinate system based on the Cremer-Pople puckering and deformation coordinates. Furthermore, analytic first- and second-order derivatives of puckering and deformation coordinates, i.e., B-matrices and D-tensors, were developed simplifying geometry optimization and frequency calculations. The new coordinate system is applied to map the potential energy surfaces and reaction paths of cycloheptane (C7H14), cyclooctane (C8H16), and cyclo[18]carbon (C-18) at the quantum chemical level and to determine for the first time all stationary points of these ring compounds in a systematic way.
机译:环形化合物如环烷烃的构象性质在很大程度上决定了它们的稳定性和反应性。因此,在过去的几十年中,对振铃反转和/或环伪定位等构象过程的调查引起了很多关注。环形化合物的深度构象分析需要将构象能量表面的相关部分映射在静止,并且在非静止点处。然而,后者通过用笛卡尔或内部坐标的戒指的描述是不可行的。我们在这项工作中提供了解决问题的解决方案,通过引入基于Cremer-Pople Puckering和变形坐标的新坐标系来解决这个问题。此外,开发了褶皱和变形坐标的分析的第一和二阶衍生物,即B矩阵和D-张量,简化了几何优化和频率计算。施加新的坐标系以在量子化学水平上映射环庚烷(C7H14),环辛烷(C-18)的潜在能量表面和反应路径,并在所有情况下确定所有这些环化合物的固定点以系统的方式。

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