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Doubly Encapsulated Perylene Diimides: Effect of Molecular Encapsulation on Photophysical Properties.
Royakkers, Jeroen; Minotto, Alessandro; Congrave, Daniel G; Zeng, Weixuan; Patel, Adil; Bond, Andrew D; Bucar, Dejan-Kresimir; Cacialli, Franco; Bronstein, Hugo.
Afiliação
  • Royakkers J; Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , United Kingdom.
  • Minotto A; Department of Physics and Astronomy and LCN , University College London , Gower Street , London WC1E 6BT , United Kingdom.
  • Congrave DG; Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , United Kingdom.
  • Zeng W; Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , United Kingdom.
  • Patel A; Department of Physics and Astronomy and LCN , University College London , Gower Street , London WC1E 6BT , United Kingdom.
  • Bond AD; Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , United Kingdom.
  • Bucar DK; Department of Chemistry , University College London , 20 Gordon Street , London WC1H 0AJ , United Kingdom.
  • Cacialli F; Department of Physics and Astronomy and LCN , University College London , Gower Street , London WC1E 6BT , United Kingdom.
  • Bronstein H; Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , United Kingdom.
J Org Chem ; 85(1): 207-214, 2020 Jan 03.
Article em En | MEDLINE | ID: mdl-31682123
ABSTRACT
Intermolecular interactions play a fundamental role on the performance of conjugated materials in organic electronic devices, as they heavily influence their optoelectronic properties. Synthetic control over the solid state properties of organic optoelectronic materials is crucial to access real life applications. Perylene diimides (PDIs) are one of the most highly studied classes of organic fluorescent dyes. In the solid state, π-π stacking suppresses their emission, limiting their use in a variety of applications. Here, we report the synthesis of a novel PDI dye that is encapsulated by four alkylene straps. X-ray crystallography indicates that intermolecular π-π stacking is completely suppressed in the crystalline state. This is further validated by the photophysical properties of the dye in both solution and solid state and supported by theoretical calculations. However, we find that the introduction of the encapsulating "arms" results in the creation of charge-transfer states which modify the excited state properties. This article demonstrates that molecular encapsulation can be used as a powerful tool to tune intermolecular interactions and thereby gain an extra level of control over the solid state properties of organic optoelectronic materials.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article