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April 29, 2026Journal of Chemical Theory and Computation0 citations

Modeling Triplet Excited-State Energy Transfer (TEET) via Multistate Density Functional Theory with Nonorthogonal State Interaction (MSDFT–NOSI)

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JGJiali GaoKCKai ChenCLChenyu Liu

Key Points

  • This research aims to develop a computational approach to model triplet excited-state energy transfer (TEET) using MSDFT-NOSI.
  • Introduced a computational protocol incorporating multistate density functional theory with nonorthogonal state interaction.
  • Utilized block-localized excitation through occupation-constrained orbital optimization.
  • Employs the generalized diabatic-at-construction transformation for diabatic state definition.
  • Validated the MSDFT-NOSI method on propenal excimer, showing quality excitation energies comparable to TDDFT.
  • Provided a detailed framework for understanding triplet energy transfer dynamics.

Abstract

We present a computational protocol for triplet excited-state energy transfer (TEET) within multistate density functional theory with nonorthogonal state interaction (MSDFT-NOSI). Block-localized excitation, achieved through occupation-constrained orbital optimization, generates fragment-localized singlet and triplet configurations in a minimal active space that captures donor and acceptor states. Well-defined diabatic states, with excitations localized on individual fragments, are obtained via the generalized diabatic-at-construction (GDAC) transformation. This yields diabatic energies and electronic couplings for both Dexter-type and Förster-type transfer in a unified framework. Application to the propenal excimer demonstrates that MSDFT-NOSI reproduces TDDFT-quality excitation energies while providing a chemically transparent picture of the TEET process. MSDFT-NOSI/GDAC offers a practical and insightful method for investigating triplet energy transfer in molecular complexes and photocatalytic systems.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/69f154c0879cb923c4944f8fhttps://doi.org/10.1021/acs.jctc.6c00444
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