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Push-Pull Structures Based on 2-Aryl/thienyl Substituted Quinazolin-4(3 H )-ones and 4-Cyanoquinazolines.

Tatyana N MoshkinaEmiliya V NosovaJulia V PermyakovaGalina N LipunovaEkaterina F ZhilinaGrigory A KimPavel A SlepukhinValery N Charushin
Published in: Molecules (Basel, Switzerland) (2022)
Design and synthesis of 2-(aryl/thiophen-2-yl)quinazolin-4(3 H )-ones and 4-cyano-2-arylquinazolines with Et 2 N-, Ph 2 N- or carbazol-9-yl- electron donating fragment are described. The key photophysical properties of these compounds have been studied by UV/Vis absorption and fluorescence spectroscopy in solvents of different polarity (toluene and MeCN). 2-(Aryl/thiophen-2-yl)quinazolin-4(3 H )-ones show fluorescence in blue-green region in toluene solution with quantum yields up to 89% in the case of 2-(4'-N,N-diphenylamino[1,1'-biphenyl]-4-yl)-quinazolin-4(3 H )-one. Moreover, triphenylamino derivative based on quinazolin-4(3 H )-one with para -phenylene linker displays the highest quantum yield of 40% in powder. The fluorescence QY of Et 2 N and Ph 2 N derivatives decrease when going from toluene to MeCN solution, whereas carbazol-9-yl counterparts demonstrate strengthening of intensity that emphasizes the strong influence of donor fragment nature on photophysical properties. 4-Cyanoquinazolines are less emissive in both solvents, as well as, in solid state. The introduction of cyano group into position 4 leads to orange/red colored powder and dual emission bands. Some molecules demonstrate the increase in emission intensity upon addition of water to MeCN solution. According to frontier molecular orbitals (HOMO, LUMO) calculations, the energy gap of 4-cyanoquinazoline decreases by more than 1 eV compared to quinazolin-4-one, that is consistent with experimental data.
Keyphrases
  • solid state
  • single molecule
  • energy transfer
  • molecular dynamics
  • density functional theory
  • ionic liquid
  • high intensity
  • high resolution
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  • molecular docking
  • mass spectrometry
  • deep learning