Literature DB >> 11670909

Interaction of M(3+) Lanthanide Cations with Amide, Pyridine, and Phosphoryl O=PPh(3) Ligands: A Quantum Mechanics Study.

F. Berny1, N. Muzet, L. Troxler, A. Dedieu, G. Wipff.   

Abstract

We report an ab initio quantum mechanical study on the interaction of M(n)()(+) cations (M(n)()(+) = La(3+), Eu(3+), Yb(3+), Sr(2+), and Na(+)) with model ligands L for lanthanide or actinide cations: several substituted amides, pyridines, and the phosphoryl-containing OPPh(3) ligand. The interaction energies DeltaE follow trends expected from the cation hardness and ligand basicity or softness in the amide series (primary < secondary-cis < secondary-trans < tertiary) as well as in the pyridine series (para-NO(2) < H < Me < NMe(2)). Among all ligands studied, OPPh(3) is clearly the best, while the (best) tertiary amide binds lanthanides slightly less than the (best) pyridine-NMe(2) ligand. In the lanthanide 1:1 complexes, the energy differences DeltaDeltaE as a function of M(3+) (about 40 kcal/mol for all ligands) are less than DeltaDeltaE in the pyridine series (up to about 90 kcal/mol) where marked polarization effects are found. The conclusions are validated by a number of methodological investigations. In addition to optimal binding features, we also investigate the directionality of ion coordination to the ligands and the effect of counterions and stoichiometry on the structural, electronic and energetic features of the complexes. The results are discussed in the context of modeling complexes of lanthanide and actinide cations and compared to those obtained with analogous Na(+) and Sr(2+) complexes.

Entities:  

Year:  1999        PMID: 11670909     DOI: 10.1021/ic980788a

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  2 in total

1.  A theoretical study on the coordination behavior of some phosphoryl, carbonyl and sulfoxide derivatives in lanthanide complexation.

Authors:  Khodayar Gholivand; Mohammad Kahnouji; Yazdan Maghsoud; Ehsan Masumian; Mahdieh Hosseini
Journal:  J Mol Model       Date:  2018-10-29       Impact factor: 1.810

2.  Tetra-Substituted p-Tert-Butylcalix[4]Arene with Phosphoryl and Salicylamide Functional Groups: Synthesis, Complexation and Selective Extraction of f-Element Cations.

Authors:  Florian Glasneck; Quirina I Roode-Gutzmer; Thorsten Stumpf; Berthold Kersting
Journal:  Chemistry       Date:  2022-01-27       Impact factor: 5.020

  2 in total

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