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April 1, 2026International Journal of Quantum Chemistry0 citations

Spin Crossover in the Cis‐ Co II / III (bpym) 2 (– NCSe ) 2 0/+ Complexes

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KSKobra SalabatHSHassan Sabzyan

Key Points

  • The research investigates the spin crossover dynamics in cis-[Co II/III (bpym)2 (–NCSe)2] complexes using computational methods.
  • Used density functional theory (DFT) to analyze vibrational modes and IR spectra.
  • Calculated Duschinsky matrix to examine vibrational mode mixing during spin transition.
  • Identified the transition state for spin crossover using the QST2 method.
  • Significant vibrational mode mixing observed during high-spin (HS) to low-spin (LS) transition.
  • Mode mixing is larger in the [Co III (bpym)2 (–NCSe)2] + complex compared to the [Co II (bpym)2 (–NCSe)2] complex.
  • HS ↔ LS transition is correlated with electron density redistribution.

Abstract

ABSTRACT Spin crossover (SCO) in cis‐ Co II/III (bpym) 2 (–NCSe) 2 0/+ complexes is studied using density functional theory UB3LYP/cc‐PVDZLANL2DZ method. Analysis of normal vibrational modes and the corresponding frequencies and IR spectra calculated for these complexes in their more stable high‐spin (HS) and less stable low‐spin (LS) states shows that the HS ↔ LS spin transition has significant effects on the vibrational modes belonging to the regions with significant electron density redistribution. Analysis of the Duschinsky matrix calculated for the HS ↔ LS SCO in these complexes shows that most of mode mixing occur around the diagonal, and the extent of Duschinsky mixing during HS ↔ LS SCO is correlated with the corresponding atomic charge (electron density) redistribution. Analysis of the index, defined based on the Duschinsky matrix elements to quantify the overall vibrational mode mixing shows that the mode mixing due to HS ↔ LS SCO is larger for the Co III (bpym) 2 (–NCSe) 2 + than that for the Co II (bpym) 2 (–NCSe) 2 complex, which is compatible with the larger variations of the atomic charges of the former complex in its SCO conversion. The transition state of the HS ↔ LS SCO in the Co III (bpym) 2 (–NCSe) 2 + complex is located using QST2 method, and characterized.

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Cite This Study

Salabat et al. (2026) studied this question.

synapsesocial.com/papers/69cd7b065652765b073a8af4https://doi.org/10.1002/qua.70158
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