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◆ Journal of the American Chemical Society2026-04-04· Chemistry

The Curious Case of Dual Emission in 9,10-Bis(phenylethynyl)anthracene

Jakub K. Sowa, Colette M. Sullivan, Leon Otis, Benjamin J G Rousseau, Jussi Isokuortti, James Shee, Peter J. Rossky, Lea Nienhaus

原始摘要(英文原文)· Original abstract
The photophysics of molecular crystals are governed by the interplay of molecular packing, electronic coupling, and lattice disorder. 9,10-Bis(phenylethynyl)anthracene (BPEA) is a benchmark system for singlet fission and solid-state triplet-triplet annihilation (TTA), yet its optical spectra display long-standing anomalies, including dual absorption and emission features that defy conventional excitonic interpretations. Here, we resolve these puzzles using steady-state and time-resolved spectroscopy combined with exciton-charge-transfer (CT) vibronic modeling, molecular dynamics simulations, and first-principles electronic structure calculations. We show that the characteristic double-band absorption of crystalline BPEA arises from electronic mixing between Frenkel excitons and low-lying CT states rather than polymorphism or conventional H-aggregate behavior. In contrast, the anomalous low-energy emission originates from structural defects associated with X-shaped BPEA dimers, whose stabilized CT character yields emissive states decoupled from the bulk exciton manifold. These trap states act as inherent dopants to suppress singlet fission while enhancing CT-triplet-pair mixing, creating efficient TTA hotspots and directly linking packing defects to increased upconversion efficiency.
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The Curious Case of Dual Emission in 9,10-Bis(phenylethynyl)anthracene — 科研速览 Science Skim