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Operationally unsaturated ruthenium complex stabilized by a phosphine 1-azaallyl ligand.

Meagan B KindervaterViktor N StaroverovKyle M K JackmanAmanda A FoghLeslie S G KelleyLisabeth LimSofia A SiroheyPaul D BoyleJohanna M Blacquiere
Published in: Dalton transactions (Cambridge, England : 2003) (2023)
Coordinatively unsaturated transition-metal compounds stabilized by supplemental electron donation from π-basic ligands are described as "operationally unsaturated". Such complexes are useful analogues of active catalyst structures that readily react with substrate molecules. We report that [Ph 2 P(C 6 H 4 )NCHC(CH 3 ) 2 ] - (L1) effectively stabilizes Ru(II) in an operationally unsaturated form. In the absence of Lewis bases, the 1-azaallyl group of L1 dominantly coordinates through a κ 1 -N mode, but can readily and reversibly isomerize to an η 3 -NCC coordination mode to stabilize the metal. As an operationally unsaturated complex, Ru(Cp*)(L1) dimerizes at low temperature. At ambient temperature it rapidly reacts with pyridine or PPh 3 to form an adduct. These findings with L1 demonstrate that changes in the hapticity of a 1-azaallyl fragment offer an alternative means to stabilize low-coordinate metals.
Keyphrases
  • transition metal
  • room temperature
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  • particulate matter
  • molecular docking
  • mass spectrometry
  • risk assessment
  • energy transfer
  • climate change
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  • drinking water