首页> 外文期刊>Journal of chemical theory and computation: JCTC >Potential-Energy Surfaces for Ring-Puckering Motions of Flexible Cyclic Molecules through Cremer-Pople Coordinates: Computation, Analysis, and Fitting
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Potential-Energy Surfaces for Ring-Puckering Motions of Flexible Cyclic Molecules through Cremer-Pople Coordinates: Computation, Analysis, and Fitting

机译:通过Cremer-Pople坐标的柔性环状分子的柔性循环分子的潜在能量表面:计算,分析和配件

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摘要

Ring-puckering motion in 12 flexible cyclic molecules is investigated by calculation and analysis of two-dimensional potential-energy surfaces (PESs) using the so-called ring-puckering coordinates proposed by Cremer and Pople. The PESs are calculated by means of density-functional theory using a B2PLYP-D3BJ exchange correlation functional with a maug-cc-pVTZ basis set, and results are compared to the available experimental and theoretical data. Special care is devoted to the aspect of symmetry in such two-dimensional PESs, which are here reported for the first time also for molecules whose planar form has symmetry lower than D-5h or C-2v. The issue of PES fitting and that of solving the nuclear dynamics using ring-puckering coordinates are also addressed. Analytical formulations of the computed PESs using suitable functional forms with a limited set of parameters are provided.
机译:使用由Cremer和Pople提出的所谓的环形褶皱坐标计算和分析了12个柔性循环分子中的环形褶皱运动。 PES通过使用MAUG-CC-PVTZ基础集的B2PLYP-D3BJ交换相关功能来计算诸如诸如Maug-CC-PVTZ基础集的功能,并且将结果与可用的实验和理论数据进行比较。 特殊小心专门讨论在这种二维PES中的对称性的方面,这里也是第一次报道的,该分子也是平面形式具有低于D-5H或C-2V的对称性的分子。 还解决了PES拟合问题以及使用戒指划线坐标解决核动力学的问题。 提供了使用具有有限参数的合适功能形式的计算PES的分析制剂。

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