首页> 外文期刊>The Journal of Chemical Physics >Assessing the Tamm-Dancoff approximation, singlet-singlet, and singlet-triplet excitations with the latest long-range corrected double-hybrid density functionals
【24h】

Assessing the Tamm-Dancoff approximation, singlet-singlet, and singlet-triplet excitations with the latest long-range corrected double-hybrid density functionals

机译:评估TAMM-DANCOFF近似,单线单态和单态三联激励,具有最新的远程校正双杂交密度函数

获取原文
获取原文并翻译 | 示例
           

摘要

We continue our work on the long-range corrected double-hybrid density functionals (LC-DHDFs) omega B2PLYP and omega B2GP-PLYP that we developed in the context of time-dependent (TD) Density Functional Theory (DFT) to enable the robust description of singlet-singlet excitations [M. Casanova-Paez, M. B. Dardis, and L. Goerigk, J. Chem. Theory Comput. 15, 4735 (2019)]. In our initial study, we only assessed the impact of a LC on BLYP-based DHDFs, and herein, we extend our understanding by providing the first test of PBE-based LC-DHDFs within the established TD-DHDF scheme. Moreover, this study is one of few that provides a direct comparison between TD-DHDFs and their faster Tamm-Dancoff-approximation variants (TDA-DHDFs). Most importantly, this is the first TDA-DHDF study since Grimme and Neese's TDA-B2PLYP [J. Chem. Phys. 127, 154116 (2007)] and the first work on TD-DHDFs that addresses singlet-triplet excitations. We show how the difference between TD-DHDFs and TDA-DHDFs is often negligible for singlet-singlet excitations, but how one has to apply TDA-DHDFs for triplet excitations. For both excitation types, the LC is beneficial to the BLYP-based DHDFs, but detrimental to the PBE-based ones. For local-valence and Rydberg excitations, omega B2PLYP and omega B2GP-PLYP as well as the global DHDF PBE-QIDH can be recommended. If a transition exhibits charge-transfer character, omega B2PLYP and omega B2GP-PLYP should be applied. An analysis of the gaps between the first singlet and triplet excited states of our systems revealed that there is room for further improvements to reach better robustness. Until that goal has been achieved, we recommend omega B2PLYP and omega B2GP-PLYP as some of the currently best TDA-DFT methods.
机译:我们继续我们在远程校正的双混合密度功能(LC-DHDFS)OMEGA B2PLYP和OMEGA B2GP-PLYP上的工作,我们在时间依赖于时间(TD)密度泛函理论(DFT)上发展,以实现强大单线态激发的描述[M. Casanova-Paez,M. B. Dardis和J.Chem。理论计算。 15,4735(2019)]。在我们的初步研究中,我们只评估了LC对基于BLYP的DHDFS的影响,并且在此方面,我们通过在已建立的TD-DHDF方案中提供基于PBE的LC-DHDFS的第一次测试来扩展我们的理解。此外,该研究是少数提供TD-DHDFS与其更快的TAMM-DANCOFF - 近似变体(TDA-DHDFS)之间的直接比较之一。最重要的是,这是Grimme和Neese的TDA-B2PLYP以来的第一个TDA-DHDF研究[J.化学。物理。 127,154116(2007)]以及解决单次三重态激发的TD-DHDF的第一工作。我们展示了TD-DHDFS和TDA-DHDFS之间的差异如何往往可以忽略单线态激发,但是如何将TDA-DHDFS应用于三联刺激。对于两个激发类型,LC对基于BLYP的DHDF有益,但对PBE的基于BBLE是有害的。对于本地 - 价和Rydberg激励,可以推荐Omega B2plyp和Omega B2GP-Plyp以及全球DHDF Pbe-Qidh。如果过渡表现出电荷转移性,则应应用OMEGA B2PLYP和OMEGA B2GP-PLYP。对我们系统的第一个单线和三联兴奋状态之间的间隙分析显示,有进一步改进的空间以达到更高的鲁棒性。在此目标实现之前,我们推荐Omega B2Plyp和Omega B2GP-Plyp作为一些当前最好的TDA-DFT方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号