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Accurate excitation energies of molecules and oligomers from a semilocal density functional

机译:从半焦质密度函数中准确的分子和低聚物的激发能量

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Excitation energy plays an important role in energy conversion, biological processes, and optical devices. In this work, we apply the Tao-Mo (TM) nonempirical meta-generalized gradient approximation and the combination TMTPSS (TMx + TPSSc), with TPSSc being the correlation part of the original TPSS (Tao-Perdew-Staroverov-Scuseria) to study excitation energies of small molecules and oligomers. Our test set consists of 17 molecules with 134 total excited states, including singlet, triplet, valence, and Rydberg excited states. Our calculation shows that both the TMTPSS and TM functionals yield good overall performance, with mean absolute errors (MAEs) of 0.37 eV and 0.42 eV, respectively, outperforming commonly used semilocal functionals LSDA (MAE = 0.55 eV), PBE (MAE = 0.58 eV), and TPSS (MAE = 0.47 eV). In particular, TMTPSS can yield nearly the same accuracy of B3LYP (MAE = 0.36 eV), with lower computational cost. The accuracy for semilocal density functional theory continues to hold for conjugated oligomers, but they become less accurate than hybrid functionals, due to the insufficient nonlocality. Published by AIP Publishing.
机译:激励能量在能量转换,生物过程和光学器件中起着重要作用。在这项工作中,我们应用Tao-Mo(TM)非透过梯度梯度梯度近似和组合TMTPSS(TMX + TPSSC),TPSSC是原始TPS的相关部分(TAO-PERDEW-STAROVEROV-SCUSERIA)研究小分子和低聚物的励磁能量。我们的测试集由17个分子组成,具有134个兴奋状态,包括单线,三联网,价值和Rydberg兴奋状态。我们的计算表明,TMTPS和TM功能都会产生良好的整体性能,平均误差(MAE)分别为0.37eV和0.42eV,优于常用的半核功能LSDA(MAE = 0.55eV),PBE(MAE = 0.58eV) )和TPSS(MAE = 0.47eV)。特别地,TMTPS可以产生几乎相同的B3LYP(MAE = 0.36eV​​)的精度,计算成本较低。对于缀合的低聚物,半焦密密度函数理论的准确性继续保持,但由于非竞争性不足,它们比混合函数变得不那么准确。通过AIP发布发布。

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