Synthesis, photophysics, and electronic structures of benzene-linked bispyrimidine compounds

Guangliang Song, Rui Liu, Guangke He, Shidong Yuan, Hongjun Zhu

Research output: Contribution to journalArticlepeer-review

Abstract

Seven multi-dipole and multibranched benzene-linked bispyrimidine derivatives containing a two-layer binary tree structure with different electron donor and acceptor groups were designed, synthesized, and characterized. The influences of substituents and solvents on the optical properties of the compounds were investigated. The UV/vis absorption (λabsmax: 311-371nm), PL emission (λemmax: 386-527nm), stokes shift (2864-6414cm-1), and fluorescence quantum yield (Φf: 0.01∼0.16) of the compounds in CH3CN solution are influenced by the electron-donor or accept substituents. The absorption and emission spectra of the compound with the highest Φf in various solvents indicate that the solvent has little influence on absorption spectrum but does influence the emission spectrum. Transient absorption spectra exhibiting strong positive absorption bands in the near-IR wavelength means that these compounds could potentially be used as optical limiting materials, which is further confirmed by the quantum chemical calculations.

Original languageEnglish
Pages (from-to)346-353
Number of pages8
JournalAsian Journal of Organic Chemistry
Volume4
Issue number4
DOIs
StatePublished - 1 Apr 2015

Keywords

  • Bispyrimidines
  • Fluorescence
  • Optical limiting
  • Solvatochromism
  • Transient absorption spectroscopy

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