◆ Journal of Materials Chemistry C2026-01-01· Intersystem crossing
Computational insights into the synergistic modulation of Δ <i>E</i> <sub>ST</sub> , spin–orbit coupling, and reorganization energy in phthalimide-based TADF emitters
Panaha, K. R. Justin Thomas
原始摘要(英文原文)· Original abstract
Computational design of phthalimide emitters identifies reorganization energy as a key parameter, alongside singlet–triplet gap, spin–orbit coupling, and through-space charge transfer, governing fast reverse intersystem crossing in TADF materials.
Computational insights into the synergistic modulation of Δ <i>E</i> <sub>ST</sub> , spin–orbit coupling, and reorganization energy in phthalimide-based TADF emitters — 科研速览 Science Skim