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用于π共轭体系的长程修正杂化泛函:离域参数对共轭长度的依赖性。

Long-range corrected hybrid functionals for π-conjugated systems: dependence of the range-separation parameter on conjugation length.

机构信息

School of Chemistry and Biochemistry and Center for Organic Photonics and Electronics, Georgia Institute of Technology, Atlanta, Georgia 30332-0400, USA.

出版信息

J Chem Phys. 2011 Nov 28;135(20):204107. doi: 10.1063/1.3663856.

Abstract

Long-range corrected (range-separated hybrid) functionals represent a relatively new class of functionals for generalized Kohn-Sham theory that have proven to be very successful, for instance, when it comes to predicting ionization potentials and energy gaps for a wide range of molecules and solids. The results obtained from long-range corrected density functional theory approaches can be improved dramatically, if the range-separation parameter (ω) is optimized for each system separately. In this work, we have optimized ω for a series of π-conjugated molecular systems of increasing length by forcing the resulting functionals to obey the ionization potential-theorem, i.e., that their highest occupied eigenvalue be equal to the ΔSCF ionization potential. The optimized ω values are observed to vary substantially from their default values for the functionals. For highly conjugated chains such as oligoacenes and polyenes, we find that the characteristic length scale of the range-separation, i.e., 1/ω, grows almost linearly with the number of repeat units, for saturated alkane chains, however, 1/ω quickly saturates after 5-6 repeat units. For oligothiophenes, we find that 1/ω grows linearly for the shorter oligomers but then saturates at around 10 repeat units. Our results point to a close relation between the optimal range-separation parameter and the degree of conjugation in the system.

摘要

长程修正(分离混合)泛函代表了广义 Kohn-Sham 理论中一个相对较新的泛函类,它们在预测广泛的分子和固体的电离势和能隙方面已经被证明非常成功。如果针对每个系统分别优化分离参数 (ω),则可以大大改善长程修正密度泛函理论方法的结果。在这项工作中,我们通过迫使所得泛函遵守电离势定理(即最高占据本征值等于 ΔSCF 电离势),对一系列长度不断增加的π共轭分子系统进行了ω 的优化。观察到优化后的 ω 值与泛函的默认值有很大的差异。对于高度共轭的链,如寡聚芳烃和多烯,我们发现分离的特征长度尺度(即 1/ω)几乎与重复单元的数量呈线性增长,而对于饱和烷烃链,1/ω 在 5-6 个重复单元后迅速饱和。对于寡聚噻吩,我们发现较短的寡聚物的 1/ω 呈线性增长,但在大约 10 个重复单元后饱和。我们的结果表明,最佳分离参数与系统中的共轭程度之间存在密切关系。

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