2021
DOI: 10.26434/chemrxiv-2021-16msm-v2
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Time-Dependent Long-Range-Corrected Double-Hybrid Density Functionals with Spin-Component and Spin-Opposite Scaling: A Comprehensive Analysis of Singlet-Singlet and Singlet-Triplet Excitation Energies

Abstract: Following the work on spin-component and spin-opposite scaled (SCS/SOS) global double hybrids for singlet-singlet excitations by Schwabe and Goerigk [J. Chem. Theory Comput. 2017, 13, 4307-4323] and our own works on new long-range corrected (LC) double hybrids for singlet-singlet and singlet-triplet excitations [J. Chem. Theory Comput. 2019, 15, 4735- 4744; J. Chem. Phys. 2020, 153, 064106], we present new LC double hybrids with SCS/SOS that demonstrate further improvement over previously published results and… Show more

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“…In these calculations, we enforced the default TURBOMOLE scaling parameters for SOS-ADC(2), SCS-ADC(2), SOS-CC2 and SCS-CC2. The TD-DFT calculations based on double hybrids were all performed with ORCA, 47 selecting PBE0-2, 48 SOS-PBE-QIDH, 49 SCS-PBE-QIDH, 49 and SOS-RSX-QIDH 49 and also using the FC approach. In ORCA, we set the tightSCF and grid3 options, with the aug-cc-pVTZ and the automatically generated auxiliary basis sets.…”
mentioning
confidence: 99%
“…In these calculations, we enforced the default TURBOMOLE scaling parameters for SOS-ADC(2), SCS-ADC(2), SOS-CC2 and SCS-CC2. The TD-DFT calculations based on double hybrids were all performed with ORCA, 47 selecting PBE0-2, 48 SOS-PBE-QIDH, 49 SCS-PBE-QIDH, 49 and SOS-RSX-QIDH 49 and also using the FC approach. In ORCA, we set the tightSCF and grid3 options, with the aug-cc-pVTZ and the automatically generated auxiliary basis sets.…”
mentioning
confidence: 99%