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Lawesson's Reagent: Providing a New Approach to the Forgotten 6-Thioverdazyl Radical.

Margot DugginWesley J OlivierAlison J CantyLi Feng LimNicholas CoxGemma F TurnerStephen A MoggachStuart C ThickettAlex C BissemberRebecca O Fuller
Published in: The Journal of organic chemistry (2024)
A new method for the preparation of the underrepresented 1,5-dimethyl-6-thioverdazyl radicals has been developed employing Lawesson's reagent (LR). The synthetic route involves the direct thionation of the carbonyl group of the corresponding dialkylbishydrazone followed by cyclization to give the tetrazinanthione verdazyl precursor on a gram scale. Subsequent oxidation yields the 6-thioverdazyl radical. It was determined that thionation of substrates containing electron-withdrawing groups in the ortho- or para- positions was high yielding. In contrast, for the parent phenyl group or substrates bearing weakly electron-donating substituents, thionation efficiency was significantly reduced. This could be overcome by utilizing partial in situ cyclization, which occurs during work up, to generate the tetrazinanthione directly via a one-pot synthesis. Density functional theory suggests that the LR fragment interacts with the carbonyl prior to cycloaddition and subsequent to cycloreversion, leading to the thiocarbonyl. The electronic nature of the radical is characterized with electron paramagnetic resonance as well as the first report of 6-thioverdazyl redox properties.
Keyphrases
  • density functional theory
  • electron transfer
  • molecular dynamics
  • solar cells
  • magnetic resonance
  • electron microscopy
  • hydrogen peroxide
  • computed tomography
  • high resolution
  • contrast enhanced