67277-15-0Relevant academic research and scientific papers
Hydrophosphination of Activated Alkenes by a Cobalt(I) Pincer Complex
Nolla-Saltiel, Roberto,Geer, Ana M.,Taylor, Laurence J.,Churchill, Olivia,Davies, E. Stephen,Lewis, William,Blake, Alexander J.,Kays, Deborah L.
supporting information, p. 3148 - 3157 (2020/06/08)
Herein we report the synthesis of three heteroleptic first-row transition metal(II) complexes containing carbazolido NNN pincer ligands and conversion to the corresponding metal(I)-carbonyl complexes via a reductive carbonylation route. These complexes are precatalysts for the hydrophosphination of activated alkenes, affording a cobalt-catalysed hydrophosphination process that solely and selectively yields the β addition (anti-Markovnikov) product. The scope of this transformation has been investigated using a variety of activated alkenes. Isolation and characterisation of substrate-coordinated intermediates reveal available coordination sites, which provide insight into the proposed catalytic cycle. (Figure presented.).
Preparation of α-aminophosphines on solid support: Model studies and parallel synthesis
Bar-Nir Ben-Aroya,Portnoy, Moshe
, p. 5147 - 5158 (2007/10/03)
On-resin assembly of phosphine ligands represents a formidable challenge. Following model solution studies, we developed two synthetic routes for α-aminophosphine synthesis on solid support. The ligands are prepared via the Mannich reaction of the resin-bound aldehyde, amine and diphenylphosphine with very good yield and purity. Alternatively, the amine can serve as the anchoring building block. The ligands were qualitatively and quantitatively analyzed using gel-phase 31P and 13C NMR techniques. The studies culminated in the parallel synthesis of a 40-member library of borane-protected α-aminophosphines.
