skip to main content
Primo Advanced Search
Primo Advanced Search Query Term
Primo Advanced Search Query Term
Primo Advanced Search Query Term
Primo Advanced Search prefilters

The Influence of the Second and Outer Coordination Spheres on Rh(diphosphine)2 CO2 Hydrogenation Catalysts

Bays, J. Timothy ; Priyadarshani, Nilusha ; Jeletic, Matthew S ; Hulley, Elliot B ; Miller, Deanna L ; Linehan, John C ; Shaw, Wendy J

ACS catalysis, 2014-10, Vol.4 (10), p.3663-3670 [Periódico revisado por pares]

American Chemical Society

Texto completo disponível

Citações Citado por
  • Título:
    The Influence of the Second and Outer Coordination Spheres on Rh(diphosphine)2 CO2 Hydrogenation Catalysts
  • Autor: Bays, J. Timothy ; Priyadarshani, Nilusha ; Jeletic, Matthew S ; Hulley, Elliot B ; Miller, Deanna L ; Linehan, John C ; Shaw, Wendy J
  • É parte de: ACS catalysis, 2014-10, Vol.4 (10), p.3663-3670
  • Descrição: A series of [Rh­(PCH2XRCH2P)2]+ complexes was prepared to investigate second and outer coordination sphere effects on CO2 hydrogenation catalysis, where X is CH2 (dppp) or X–R is N–CH3, N–CH2COOH (glycine), N–CH2COOCH3 (Gly-OMe), or N–CH2C­(O)­N–CH­(CH3)­COOCH3 (GlyAla-OMe). All of these complexes were active for CO2 reduction to formate, with the N–CH3 derivative offering an 8-fold enhancement over the dppp derivative, which is consistent with increased electron density around the metal. Despite the increase in rate with the addition of the pendant nitrogen, the addition of electron withdrawing amino acids and dipeptides to the amine resulted in complexes with reductions in rate of 1 to 2 orders of magnitude, most consistent with a change in pK a of the pendant amine, resulting in lower activity. Collectively, the data suggest multiple contributions of the pendant amine in this catalytic system.
  • Editor: American Chemical Society
  • Idioma: Inglês

Buscando em bases de dados remotas. Favor aguardar.