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采用广义梯度近似的热辅助占据密度泛函理论

Thermally-assisted-occupation density functional theory with generalized-gradient approximations.

作者信息

Chai Jeng-Da

机构信息

Department of Physics, Center for Theoretical Sciences, and Center for Quantum Science and Engineering, National Taiwan University, Taipei 10617, Taiwan.

出版信息

J Chem Phys. 2014 May 14;140(18):18A521. doi: 10.1063/1.4867532.

Abstract

We extend the recently proposed thermally-assisted-occupation density functional theory (TAO-DFT) [J.-D. Chai, J. Chem. Phys. 136, 154104 (2012)] to generalized-gradient approximation (GGA) exchange-correlation density functionals. Relative to our previous TAO-LDA (i.e., the local density approximation to TAO-DFT), the resulting TAO-GGAs are significantly superior for a wide range of applications, such as thermochemistry, kinetics, and reaction energies. For noncovalent interactions, TAO-GGAs with empirical dispersion corrections are shown to yield excellent performance. Due to their computational efficiency for systems with strong static correlation effects, TAO-LDA and TAO-GGAs are applied to study the electronic properties (e.g., the singlet-triplet energy gaps, vertical ionization potentials, vertical electron affinities, fundamental gaps, and symmetrized von Neumann entropy) of acenes with different number of linearly fused benzene rings (up to 100), which is very challenging for conventional electronic structure methods. The ground states of acenes are shown to be singlets for all the chain lengths studied here. With the increase of acene length, the singlet-triplet energy gaps, vertical ionization potentials, and fundamental gaps decrease monotonically, while the vertical electron affinities and symmetrized von Neumann entropy (i.e., a measure of polyradical character) increase monotonically.

摘要

我们将最近提出的热辅助占据密度泛函理论(TAO-DFT)[J.-D. 柴,《化学物理杂志》136, 154104 (2012)] 扩展到广义梯度近似(GGA)交换关联密度泛函。相对于我们之前的TAO-LDA(即TAO-DFT的局域密度近似),所得的TAO-GGAs在广泛的应用中表现出显著优势,如热化学、动力学和反应能。对于非共价相互作用,具有经验色散校正的TAO-GGAs显示出优异的性能。由于它们对具有强静态相关效应的体系具有计算效率,TAO-LDA和TAO-GGAs被应用于研究具有不同线性稠合苯环数(最多100个)的并苯的电子性质(例如,单重态-三重态能隙、垂直电离势、垂直电子亲和势、基本能隙和对称化的冯·诺依曼熵),这对于传统电子结构方法来说极具挑战性。在此研究的所有链长的并苯基态均为单重态。随着并苯长度的增加,单重态-三重态能隙、垂直电离势和基本能隙单调减小,而垂直电子亲和势和对称化的冯·诺依曼熵(即多自由基特征的一种度量)单调增加。

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