School of Chemistry , The University of Melbourne , Victoria 3010 , Australia.
J Chem Theory Comput. 2019 Sep 10;15(9):4735-4744. doi: 10.1021/acs.jctc.9b00013. Epub 2019 Aug 8.
Double-hybrid density functionals are currently the most accurate density functionals for ground-state properties and electronic excitations. Nevertheless, the lack of a long-range correction scheme makes them unreliable when it comes to long-range excitations. For this reason, we propose the first two time-dependent double-hybrid functionals with correct asymptotic long-range behavior named ωB2PLYP and ωB2GPPLYP. Herein, we demonstrate their excellent performance and show that they are the most accurate and robust time-dependent density functional theory methods for electronic excitation energies. They provide a balanced description of local-valence, Rydberg, and charge-transfer states. They are also able to tackle the difficult first two transitions in polycyclic aromatic hydrocarbons and show very promising results in a preliminary study on transition-metal compounds, exemplified for titanium dioxide clusters. This work shows that double hybrids can be systematically improved also for excitation energies, and further work in this field is warranted.
双杂化密度泛函目前是最精确的基态性质和电子激发态的密度泛函。然而,由于缺乏长程校正方案,当涉及长程激发时,它们就不可靠了。出于这个原因,我们提出了第一个具有正确渐近长程行为的两个时间相关双杂化泛函,分别命名为ωB2PLYP 和 ωB2GPPLYP。在此,我们展示了它们出色的性能,并表明它们是最精确和最稳健的时间相关密度泛函理论方法,适用于电子激发能。它们提供了对局部价态、Rydberg 和电荷转移态的平衡描述。它们还能够处理多环芳烃中的前两个困难跃迁,并在过渡金属化合物的初步研究中显示出非常有前景的结果,以二氧化钛团簇为例。这项工作表明,双杂化也可以系统地提高激发能,因此在这一领域进一步研究是必要的。