Skip to main content
Journal cover image

Density functional analysis of group 10 organometallic diphosphinito complexes for catalytic formation of C‐P bonds

Journal articles
Ellis, M; Downey, K
Published in: International Journal of Quantum Chemistry
June 15, 2016

New group 10 metalloorganic complexes are proposed as the basis of new catalysts for the formation of carbon‐phosphorous bonds. Density functional theory (DFT) is applied, using multiple DFT functionals, to model molecular geometry as well as electron density distribution in the highest occupied molecular orbitals (HOMOs) expected to carry out a reductive catalytic cycle. DFT/M06 analysis predicts a robust planar geometry, regardless of alteration of major components. Precursors for rapid catalyst generation should begin with an electron‐withdrawing monodentate ligand. Palladium and platinum catalysts have lower chemical hardness, but the electron distribution in the HOMO of the nickel‐based catalyst is preferred for reductive catalytic mechanisms. Both electron density and chemical hardness, however, are affected by the choice of metal ion and the composition of the monodentate ligand bound to it. Group 10 metalloorganic complexes are modeled as precursors for generating new catalysts for a minimally wasteful method of forming bonds commonly found in biochemically active compounds. Suitable precursors have an accessible metal center, as well as significant the HOMO/LUMO involvement at the metal center. All complexes studied offer similar geometries, but precursor transformation into catalyst depends on the electron‐withdrawing ligand being exchanged. Catalyst turn over number is predicted to depend primarily on the central metal. © 2016 Wiley Periodicals, Inc.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

International Journal of Quantum Chemistry

DOI

EISSN

1097-461X

ISSN

0020-7608

Publication Date

June 15, 2016

Volume

116

Issue

12

Start / End Page

945 / 952

Publisher

Wiley

Related Subject Headings

  • Chemical Physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Ellis, M., & Downey, K. (2016). Density functional analysis of group 10 organometallic diphosphinito complexes for catalytic formation of C‐P bonds. International Journal of Quantum Chemistry, 116(12), 945–952. https://doi.org/10.1002/qua.25105
Ellis, Matthew, and Karen Downey. “Density functional analysis of group 10 organometallic diphosphinito complexes for catalytic formation of C‐P bonds.” International Journal of Quantum Chemistry 116, no. 12 (June 15, 2016): 945–52. https://doi.org/10.1002/qua.25105.
Ellis M, Downey K. Density functional analysis of group 10 organometallic diphosphinito complexes for catalytic formation of C‐P bonds. International Journal of Quantum Chemistry. 2016 Jun 15;116(12):945–52.
Ellis, Matthew, and Karen Downey. “Density functional analysis of group 10 organometallic diphosphinito complexes for catalytic formation of C‐P bonds.” International Journal of Quantum Chemistry, vol. 116, no. 12, Wiley, June 2016, pp. 945–52. Crossref, doi:10.1002/qua.25105.
Ellis M, Downey K. Density functional analysis of group 10 organometallic diphosphinito complexes for catalytic formation of C‐P bonds. International Journal of Quantum Chemistry. Wiley; 2016 Jun 15;116(12):945–952.
Journal cover image

Published In

International Journal of Quantum Chemistry

DOI

EISSN

1097-461X

ISSN

0020-7608

Publication Date

June 15, 2016

Volume

116

Issue

12

Start / End Page

945 / 952

Publisher

Wiley

Related Subject Headings

  • Chemical Physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry