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Boron-Thioketonates: A New Class of S,O-Chelated Boranes as Acceptors in Optoelectronic Devices.

Anna Chandrasekar MuraliPrakash NayakShashwat NayakSabyasachi DasSatyaprasad P SenanayakKrishnan Venkatasubbaiah
Published in: Angewandte Chemie (International ed. in English) (2023)
Development of new n-type semiconductors with tunable band gap and dielectric constant has significant implication in dissociating bound charge carrier relevant for demonstrating high performance optoelectronic devices. Boron-β-thioketonates (MTDKB), analogues to boron-β-diketonates containing a sulfur atom in the framework of β-diketones were synthesized. Bulk transport measurement exhibited an outstanding bulk electron mobility of ≈0.003 cm 2  V -1  s -1 , which is among the best values reported till date in these class of semiconducting materials and correspondingly a single junction photo responsivity of upto 6 mA W -1 was obtained. This new family of O,S-chelated boron compounds exhibited luminescence in the far red/near-infrared region. The remarkable red shift of 89 nm (fluorescence) observed for 4 a in comparison with analogues boron-β-diketonate signifies the importance of sulfur in these molecules. MTDKBs with amine functionality have also been investigated as an ON/OFF fluorescent sensor.
Keyphrases
  • quantum dots
  • energy transfer
  • molecular docking
  • electron transfer
  • molecular dynamics
  • atomic force microscopy
  • molecular dynamics simulations
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