Literature DB >> 22455756

Closely stacked oligo(phenylene ethynylene)s: effect of π-stacking on the electronic properties of conjugated chromophores.

Subodh P Jagtap1, Sukrit Mukhopadhyay, Veaceslav Coropceanu, Glen L Brizius, Jean-Luc Brédas, David M Collard.   

Abstract

In this work, a bicyclo[4.4.1]undecane scaffold is used to hold oligo(phenylene ethynylene) units in a cofacially stacked arrangement along the entire length of the conjugated units. We study the impact that the resulting strong interchain interactions have on the photophysical properties. The length of the individual oligomer branches was varied from three to five rings to investigate the effect of conjugation on the electronic properties of the stacked segments. Absorption and fluorescence spectra were recorded and compared to those of the corresponding unstacked analogues. Time-dependent density functional theory calculations were carried out and helped to rationalize the low-energy features present in the fluorescence spectra of the stacked systems. The calculations indicate that the low-energy emissions are due to the presence of excimer-like states. The stronger intensity of the low-energy fluorescence band observed in the five-ring stacked system compared to the three-ring analogue is attributed to the smaller activation barrier that separates the local intrachain state and the excimer-like state in the former compound.

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Year:  2012        PMID: 22455756     DOI: 10.1021/ja3019065

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  10 in total

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6.  Hot exciton transition for organic light-emitting diodes: tailoring excited-state properties and electroluminescence performances of donor-spacer-acceptor molecules.

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7.  Strategic tuning of excited-state properties of electroluminescent materials with enhanced hot exciton mixing.

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9.  Physical Mechanisms of Intermolecular Interactions and Cross-Space Charge Transfer in Two-Photon BDBT-TCNB Co-Crystals.

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Journal:  Nanomaterials (Basel)       Date:  2022-08-11       Impact factor: 5.719

10.  Switching between H- and J-type electronic coupling in single conjugated polymer aggregates.

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  10 in total

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