In previous work on the performance of multiconfigurational second-order perturbation theory (CASPT2) in describing spin state energetics in first-row transition metal systems [ Pierloot et al. J. Chem. Theory Comput. 2017 , 13 , 537 - 553 ], we showed that standard CASPT2 works well for valence correlation but does not describe the metal semicore (3s3p) correlation effects accurately. This failure is partially responsible for the well-known bias toward high-spin states of CASPT2. In this paper, we expand our previous work and show that this bias could be partly removed with a combined CASPT2/CC approach: using high-quality CASPT2 with extensive correlation-consistent basis sets for valence correlation and low-cost CCSD(T) calculations with...
Co(III) complexes are increasingly prevalent in homogeneous catalysis. Catalytic cycles involve mult...
Accurate predictions of spin-state ordering, reaction energetics, and barrier heights are critical f...
Accurate predictions of spin-state ordering, reaction energetics, and barrier heights are critical f...
In previous work on the performance of multiconfigurational second-order perturbation theory (CASPT2...
This paper presents an in-depth study of the performance of multiconfigurational second-order pertur...
This paper presents an in-depth study of the performance of multiconfigurational second-order pertur...
The accuracy of the relative spin state energetics of three small Fe(II) or Fe(III) heme models from...
Spin-state energetics of transition metal complexes remain one of the most challenging targets for e...
Highly accurate estimates of the high-spin/low-spin energy difference ΔEHLel in the high-spin comple...
The complete active space second order perturbation theory (CASPT2) can be extended to larger active...
A new composite method for the calculation of spin–crossover energies in 3d transition-metal complex...
A new composite method for the calculation of spin–crossover energies in 3d transition-metal complex...
High-level ab initio calculations using multiconfigurational perturbation theory complete active spac...
Co(III) complexes are increasingly prevalent in homogeneous catalysis. Catalytic cycles involve mult...
Highly accurate estimates of the high-spin/low-spin energy difference Δ<i>E</i><sub>HL</sub><sup>el<...
Co(III) complexes are increasingly prevalent in homogeneous catalysis. Catalytic cycles involve mult...
Accurate predictions of spin-state ordering, reaction energetics, and barrier heights are critical f...
Accurate predictions of spin-state ordering, reaction energetics, and barrier heights are critical f...
In previous work on the performance of multiconfigurational second-order perturbation theory (CASPT2...
This paper presents an in-depth study of the performance of multiconfigurational second-order pertur...
This paper presents an in-depth study of the performance of multiconfigurational second-order pertur...
The accuracy of the relative spin state energetics of three small Fe(II) or Fe(III) heme models from...
Spin-state energetics of transition metal complexes remain one of the most challenging targets for e...
Highly accurate estimates of the high-spin/low-spin energy difference ΔEHLel in the high-spin comple...
The complete active space second order perturbation theory (CASPT2) can be extended to larger active...
A new composite method for the calculation of spin–crossover energies in 3d transition-metal complex...
A new composite method for the calculation of spin–crossover energies in 3d transition-metal complex...
High-level ab initio calculations using multiconfigurational perturbation theory complete active spac...
Co(III) complexes are increasingly prevalent in homogeneous catalysis. Catalytic cycles involve mult...
Highly accurate estimates of the high-spin/low-spin energy difference Δ<i>E</i><sub>HL</sub><sup>el<...
Co(III) complexes are increasingly prevalent in homogeneous catalysis. Catalytic cycles involve mult...
Accurate predictions of spin-state ordering, reaction energetics, and barrier heights are critical f...
Accurate predictions of spin-state ordering, reaction energetics, and barrier heights are critical f...