1,2,3-Tri(9-anthryl)benzene. Photophysical Properties and Solid State Intermolecular Interactions of Radially Arranged, Congested Aromatic π-Planes

12 November 2021, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

We report the Negishi coupling based synthesis of 1,2,3-tri(9-anthryl)benzene derivatives, containing three radially arranged anthracenes in a π-cluster. In the crystalline state of the unsubstituted derivative, intermolecular π-π and CH-π interactions between the anthracene units drive the formation of a two-dimensional packing structure. Owing to though-space π-conjugation between anthracene units, the substances have unique electronic properties. The excited state dynamic behavior occurring between the three radially arranged anthracene moieties, such as exciton localization/delocalization, was elucidated by means of transient absorption measurements and quantum chemical calculations. Interestingly, even though the three anthracenes are closely oriented with a ca. 3.0 Å distances between their C-9 positions, exciton localization on two anthracene units is energetically favorable because of the flexible nature of the radially arranged aromatic rings.

Keywords

π-cluster
anthracene
CH-π interaction
photoisomerization
excited state dynamics

Supplementary materials

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Description
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Supporting Information
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Experimental Details, Synthesis of Materials, Supplementary Figures and Tables, and Charts of 1H and 13C NMR Spectra
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Cif file of 2b
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Crystal data of 2b
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Cif file of 3a
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Crystal data of 3a
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Cif file of 3a-PI
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Crystal data of 3a-PI
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Cif file of 3b
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Crystal data of 3b
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