| Literature DB >> 27064459 |
Xianchao Du1, Mao-Sen Yuan2, Fan Xu1, Hui Wang1, Qin Wang1, Wenji Wang1, Dong-En Wang1, Jinyi Wang3.
Abstract
C3-symmetric truxene and triindole have been widely used to design the branched optoelectronic molecules. However, most of them exhibit high luminous efficiency in the solution and quenched luminescence in the solid state. Here, we respectively chose alkylated truxene and triindole as the central core, 2-methylphenyl as the peripheral functional groups to synthesize three branched compounds. Their photophysical properties have been explored combining with the theoretical calculation. The three compounds exhibit good solubility and high solid-state fluorescence quantum yields. The absorption and emission peaks of triindole compound exhibit apparent red-shift in comparison with those of truxene compounds, which indicates triindole more highly electron delocalization than truxene. The single-crystal structure shows that alkylation of the central core and branched steric bulkiness of these molecules effectively reduce the intermolecular π⋯π stacking and avoid the non-radiative transition of these molecules from excited state to ground state in the solid state.Entities:
Keywords: Crystal structure; Luminescent spectrum; Solid-state luminescence; Triindole; Truxene
Year: 2016 PMID: 27064459 DOI: 10.1016/j.saa.2016.03.046
Source DB: PubMed Journal: Spectrochim Acta A Mol Biomol Spectrosc ISSN: 1386-1425 Impact factor: 4.098