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密度泛函理论中的经典反应势垒:绝热连接视角

Classical Reaction Barriers in DFT: An Adiabatic-Connection Perspective.

作者信息

Wibowo-Teale Andrew M, Huynh Bang C, Helgaker Trygve, Tozer David J

机构信息

School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, U.K.

Hylleraas Centre for Quantum Molecular Sciences, Department of Chemistry, University of Oslo, P.O. Box 1033 Blindern, N-0315 Oslo, Norway.

出版信息

J Chem Theory Comput. 2025 Jan 14;21(1):124-137. doi: 10.1021/acs.jctc.4c01038. Epub 2024 Dec 23.

Abstract

Classical reaction barriers in density-functional theory are considered from the perspective of the density-fixed adiabatic connection. A 'reaction adiabatic-connection integrand', , is introduced, where λ is the electron-electron interaction strength, for which equals the barrier, meaning the barrier can be easily visualized as the area under a plot of vs λ. For five chemical reactions, plots of reference , calculated from Lieb maximizations at the coupled-cluster level of theory, are compared with approximate , calculated from common exchange-correlation functionals using coordinate scaling, for coupled-cluster densities. The comparison provides a simple way to visualize and understand functional-driven errors and trends in barriers from approximate functionals, while allowing a clean separation of the role of exchange and correlation contributions to the barrier. Specifically, the accuracy of is determined entirely by the accuracy of the exchange functional, while the shape of is determined entirely by the correlation functional. The results clearly illustrate why the optimal amount of exact (orbital) exchange in hybrid functionals differs between reactions, including forward and reverse directions in the same reaction, and hence why simply introducing larger amounts of exact exchange may not be a reliable approach for improving barriers. Instead, the shape of must be captured more accurately through more accurate correlation functionals, and the numerical data presented may be useful for this purpose. Density-driven errors are then considered, and possible cancellation with functional-driven errors in barriers─noted in prior studies when Hartree-Fock densities are used─is illustrated from the perspective of .

摘要

从密度固定绝热连接的角度考虑密度泛函理论中的经典反应势垒。引入了一个“反应绝热连接被积函数”,其中λ是电子 - 电子相互作用强度,对于该函数,其值等于势垒,这意味着势垒可以很容易地可视化为该函数与λ关系图下的面积。对于五个化学反应,将在耦合簇理论水平上通过Lieb最大化计算得到的参考函数的图,与使用坐标缩放从常见交换相关泛函针对耦合簇密度计算得到的近似函数的图进行比较。这种比较提供了一种简单的方法来可视化和理解近似泛函在势垒方面的泛函驱动误差和趋势,同时能够清晰地分离交换和相关对势垒贡献的作用。具体而言,该函数的准确性完全由交换泛函的准确性决定,而该函数的形状完全由相关泛函决定。结果清楚地说明了为什么混合泛函中精确(轨道)交换的最佳量在不同反应之间存在差异,包括同一反应的正向和反向,因此也说明了为什么简单地引入更多的精确交换可能不是提高势垒的可靠方法。相反,必须通过更精确的相关泛函更准确地捕捉该函数的形状,并且所呈现的数值数据可能对此目的有用。然后考虑密度驱动的误差,并从该函数的角度说明了在使用Hartree - Fock密度的先前研究中注意到的势垒中密度驱动误差与泛函驱动误差可能的抵消情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/021d/11736800/c780116449ba/ct4c01038_0002.jpg

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