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Moving Beyond Boron-Based Substituents To Achieve Phosphorescence in Tellurophenes.

William Torres DelgadoChristina A BraunMichael P BooneOlena ShynkarukYanyu QiRobert McDonaldMichael J FergusonPrzemyslaw DataShawan K C AlmeidaInara de AguiarGabriel L C de SouzaAlex BrownGang HeEric Rivard
Published in: ACS applied materials & interfaces (2017)
Previous research in our group showed that tellurophenes with pinacolboronate (BPin) units at the 2- and/or 5-positions displayed efficient phosphorescence in the solid state, both in the presence of oxygen and water. In this current study, we show that luminescence from a tellurophene is possible when various aryl-based substituents are present, thus greatly expanding the family of known (and potentially accessible) Te-based phosphors. Moreover, for the green phosphorescent perborylated tellurium heterocycle, 2,3,4,5-TeC4BPin4 (4BTe), oxygen-mediated quenching of phosphorescence is an important contributor to the lack of emission in solution (when exposed to air); thus, this system displays aggregation-enhanced emission (AEE). These discoveries should facilitate the future design of color tunable tellurium-based luminogens.
Keyphrases
  • solid state
  • room temperature
  • energy transfer
  • light emitting
  • quantum dots
  • current status