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Exploring Supramolecular Assembly Space of Cationic 1,2,4-Selenodiazoles: Effect of the Substituent at the Carbon Atom and Anions.

Mariya V GrudovaAlexey S KubasovVictor N KhrustalevKonstantin Yu ZhizhinAndreii S KritchenkovValentine G NenajdenkoAlexander V BorisovAlexander G Tskhovrebov
Published in: Molecules (Basel, Switzerland) (2022)
Chalcogenodiazoles have been intensively studied in recent years in the context of their supramolecular chemistry. In contrast, the newly discovered cationic 1,2,4-selenodiazole supramolecular building blocks, which can be obtained via coupling between 2-pyridylselenyl halides and nitriles, are virtually unexplored. A significant advantage of the latter is their facile structural tunability via the variation of nitriles, which could allow a fine tuning of their self-assembly in the solid state. Here, we explore the influence of the substituent (which derives from the nitrile) and counterions on the supramolecular assembly of cationic 1,2,4-selenodiazoles via chalcogen bonding.
Keyphrases
  • solid state
  • energy transfer
  • water soluble
  • magnetic resonance
  • air pollution
  • ionic liquid
  • quantum dots
  • magnetic resonance imaging
  • room temperature
  • drug discovery