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◆ Journal of the American Chemical Society2026-01-29· Exciton

Divergent Excitons by Programming Secondary Structures of Perylene Bisimide Oligomers

Wei Zhang, Ben Teichmann, Yeonju Park, Young Mee Jung, Bin Liu, F. Würthner, Dongho Kim

原始摘要(英文原文)· Original abstract
Deliberate control of exciton landscapes in π-conjugated oligomers represents a powerful approach to advancing functional optoelectronic materials, yet systematic modulation within homo-oligomeric architectures remains highly challenging. Here, we present two series of homo-perylene bisimide (PBI) oligomers in which contrasting bay-substitution patterns dictate the secondary structures (molecular conformation), inter-PBI coupling, and exciton behavior. The conformationally less defined zigzag PBI1 oligomers retain Frenkel-type emission in nonpolar environments but undergo polarity-induced symmetry-breaking charge separation (SBCS) in polar solvents, generating charge-separated states with chain-length-dependent dynamics. In sharp contrast, the π-stacked PBI2 oligomers exhibit strong H-type coupling, in which Frenkel excitons rapidly evolve into excimer-like charge-resonance states and multiexciton configurations that partially relax into triplets. Resonance Raman spectroscopy reveals distinct vibrational fingerprints, distinguishing structurally isolated PBI units in PBI1 oligomers from strongly coupled H-type aggregates in PBI2 oligomers, thereby providing direct structural evidence for their divergent inter-PBI interactions. Ultrafast spectroscopy under varied solvent and temperature conditions, supported by electronic-structure calculations, further demonstrates how substitution patterns govern the contrasting exciton dynamics. Collectively, the results establish secondary-structure programming as a rational design principle for tuning exciton diversity in homo-oligomers, bridging biological paradigms of chromophore organization with synthetic strategies for light harvesting, photocatalysis, and optoelectronics.
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Divergent Excitons by Programming Secondary Structures of Perylene Bisimide Oligomers — 科研速览 Science Skim