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March 29, 2026Chemistry - A European Journal2 citationsOpen Access

Interplay of Orbital Overlap and Exciton Coupling in the Optical Properties of Adamantylethynyl‐Substituted Pyrene Molecular Crystals

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BHBenedikt HerbertKSKazutaka Shoyama

Key Points

  • The aim is to understand how orbital overlap and exciton coupling influence the optical properties of molecular crystals.
  • Designed adamantylethynyl-pyrene derivatives for unidirectional crystal packing
  • Measured spectral shifts in the transition from solution to crystal state
  • Analyzed contributions of exciton coupling and band dispersion to optical properties
  • Observed large redshifts of up to -203 meV cannot be explained by exciton coupling alone.
  • Identified narrowing of frontier crystal orbital energy levels as a substantial contributor.
  • Coherence lengths corresponding to 4 to 7 molecules align with literature values.

Abstract

Molecular crystals of apolar π-conjugated hydrocarbons exhibit pronounced solution-to-crystal spectral shifts, yet the interplay between band formation and exciton coupling remains unclear. Adamantylethynyl-pyrene derivatives were designed to adopt unidirectional crystal packing, providing a model system to disentangle these effects. Large redshifts of up to -203 meV are observed, which cannot be explained by exciton coupling alone but require a substantial contribution from band dispersion, identified here as a narrowing of frontier crystal orbital energy levels. The remaining discrepancies between experiment and the full-coherence limit correspond to coherence lengths of four to seven molecules, consistent with literature values. These results provide a basis for interpreting more complex organic crystalline materials and highlight the need for a more comprehensive understanding of the photophysical properties of molecular crystals.

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Cite This Study

Herbert et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2b8de0f0f753b39d180https://doi.org/10.1002/chem.70949
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