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A Bidentate Ligand Featuring Ditopic Lewis Acids in the Second Sphere for Selective Substrate Capture and Activation.

Daniel M BeaganJohn J KiernickiMatthias ZellerNathaniel K Szymczak
Published in: Angewandte Chemie (International ed. in English) (2023)
We present a ligand platform featuring appended ditopic Lewis acids to facilitate capture/activation of diatomic substrates. We show that incorporation of two 9-borabicyclo[3.3.1]nonane (9-BBN) units on a single carbon tethered to a pyridine pyrazole scaffold maintains a set of unquenched nitrogen donors available to coordinate Fe II , Zn II , and Ni II . Using hydride ion affinity and competition experiments, we establish an additive effect for ditopic secondary sphere boranes, compared to the monotopic analogue. These effects are exploited to achieve high selectivity for binding NO 2 - in the presence of competitive anions such as F - and NO 3 - . Finally, we demonstrate hydrazine capture within the second-sphere of metal complexes, followed by unique activation pathways to generate hydrazido and diazene ligands on Zn and Fe, respectively.
Keyphrases
  • heavy metals
  • metal organic framework
  • ionic liquid
  • risk assessment
  • molecular docking
  • fluorescent probe
  • structural basis