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量子力学隧穿:实现低于千焦每摩尔势垒高度所需的缺失项。

Quantum mechanical tunnelling: the missing term to achieve sub-kJ mol barrier heights.

作者信息

Kozuch Sebastian, Schleif Tim, Karton Amir

机构信息

Chemistry Department, Ben-Gurion University of the Negev, Beer-Sheva, 841051, Israel.

出版信息

Phys Chem Chem Phys. 2021 May 14;23(18):10888-10898. doi: 10.1039/d1cp01275d. Epub 2021 Apr 28.

Abstract

To predict barrier heights at low temperatures, it is not enough to employ highly accurate electronic structure methods. We discuss the influence of quantum tunnelling on the comparison of experimental and theoretical activation parameters (E, ΔH, ΔG, or ΔS), since the slope-based experimental techniques to obtain them completely neglect the tunnelling component. The intramolecular degenerate rearrangement of four fluxional molecules (bullvalene, barbaralane, semibullvalene, and norbornadienylidene) were considered, systems that cover the range between fast deep tunneling and small but significant shallow tunnelling correction. The barriers were computed with the composite W3lite-F12 method at the CCSDT(Q)/CBS level, and the tunnelling contribution with small curvature tunnelling. While at room temperature the effect is small (∼1 kJ mol), at low temperatures it can be considerable (in the order of tens of kJ mol at ∼80 K).

摘要

要预测低温下的势垒高度,仅采用高精度的电子结构方法是不够的。我们讨论了量子隧穿对实验和理论活化参数(E、ΔH、ΔG或ΔS)比较的影响,因为用于获取这些参数的基于斜率的实验技术完全忽略了隧穿分量。我们考虑了四个通量分子(bullvalene、barbaralane、semibullvalene和降冰片二烯叉)的分子内简并重排,这些体系涵盖了从快速深度隧穿到小但显著的浅隧穿校正的范围。在CCSDT(Q)/CBS水平上用复合W3lite-F12方法计算势垒,并采用小曲率隧穿计算隧穿贡献。虽然在室温下该效应较小(约1 kJ/mol),但在低温下可能相当可观(在约80 K时可达数十kJ/mol量级)。

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