142207-34-9Relevant academic research and scientific papers
The synthesis of highly active iridium(i) complexes and their application in catalytic hydrogen isotope exchange
Brown, Jack A.,Cochrane, Alison R.,Irvine, Stephanie,Kerr, William J.,Mondal, Bhaskar,Parkinson, John A.,Paterson, Laura C.,Reid, Marc,Tuttle, Tell,Andersson, Shalini,Nilsson, Gran N.
, p. 3551 - 3562 (2014)
A series of robust iridium(I) complexes bearing a sterically encumbered N-heterocyclic carbene ligand, alongside a phosphine ligand, has been synthesised and investigated in hydrogen isotope exchange processes. These complexes have allowed isotope incorpo
Burgess iridium(I)-catalyst for selective hydrogen isotope exchange
Burhop, Annina,Prohaska, Raphail,Weck, Remo,Atzrodt, Jens,Derdau, Volker
, p. 343 - 348 (2017/06/08)
We have evaluated the commercially available Burgess catalyst in hydrogen isotope exchange reactions with several substrates bearing different directing group functionalities and have obtained moderate to high (50%-97%D) deuterium incorporations. The broa
Hydrogen isotope exchange with highly active iridium(I) NHC/phosphine complexes: a comparative counterion study
Kerr, William J.,Mudd, Richard J.,Owens, Philippa K.,Reid, Marc,Brown, Jack A.,Campos, Sebastien
, p. 601 - 603 (2016/12/26)
Herein, we present a range of substrates that undergo hydrogen isotope exchange with an iridium(I) N-heterocyclic carbene/phosphine complex bearing the less coordinating tetrakis[3,5-bis(trifluoromethyl)phenyl]borate counterion and compare these with labe
Iridium-catalyzed H/D exchange: Ligand complexes with improved efficiency and scope
Parmentier, Michael,Hartung, Thomas,Pfaltz, Andreas,Muri, Dieter
, p. 11496 - 11504 (2014/11/27)
Hydrogen isotope exchange (HIE) is one of the most attractive tools for the introduction of deuterium or tritium to an organic compound. Herein, iridium complexes with N,P-ligands, highly active catalysts for asymmetric double bond reductions, have been tested for their HIE capabilities. Electron-rich ligands, containing dicyclohexylphosphines or phosphinites, have been identified as excellent ligands for efficient deuterium incorporation. Substrates with strong directing groups, that is, pyridines, ketones, and amides, as well as weak ligating units, such as, nitro, sulfones, and sulfonamides, could be labeled efficiently. With the addition of tris(pentafluorophenyl) borane to the reaction mixture, also highly deactivating nitrile substituents were well tolerated in the reaction. Based on the excellent results obtained with the chiral ThrePhox ligand, a structurally simpler, achiral ligand was developed. The iridium complex containing this ligand, proved to be a powerful catalyst for HIE reactions. Uses beyond asymmetric catalysis: Iridium complexes with a wide variety of N,P-ligands were explored in hydrogen isotope exchange reactions (see scheme; pyr.=pyridine). Complexes with electron-rich ligands were found to be highly reactive, leading to efficient deuterium incorporation even in compounds bearing only weakly coordinating directing groups.
Highly active iridium(I) complexes for catalytic hydrogen isotope exchange
Brown, Jack A.,Irvine, Stephanie,Kennedy, Alan R.,Kerr, William J.,Andersson, Shalini,Nilsson, Goeran N.
, p. 1115 - 1117 (2008/09/21)
Practically convenient methods have been developed for the preparation of new iridium complexes, possessing bulky N-heterocyclic carbene and phosphine ligands; these routinely handled complexes are highly active catalysts within directed hydrogen isotope
