Literature DB >> 23461540

Synthesis, lanthanide coordination chemistry, and liquid-liquid extraction performance of CMPO-decorated pyridine and pyridine N-oxide platforms.

Daniel Rosario-Amorin1, Sabrina Ouizem, Diane A Dickie, Yufeng Wen, Robert T Paine, Jian Gao, John K Grey, Ana de Bettencourt-Dias, Benjamin P Hay, Lætitia H Delmau.   

Abstract

Syntheses for a set of new ligands containing one or two carbamoylmethylphosphine oxide (CMPO) fragments appended to pyridine and pyridine N-oxide platforms are described. Molecular mechanics analyses for gas phase lanthanide-ligand interactions for the pyridine N-oxides indicate that the trifunctional NOPOCO molecules, 2-{[Ph2P(O)][C(O)NEt2]C(H)}C5H4NO (7) and 2-{[Ph2P(O)][C(O)NEt2]CHCH2}C5H4NO (8), and pentafunctional NOPOP'O'COC'O' molecules, 2,6-{[Ph2P(O)][C(O)NEt2]C(H)}2C5H3NO (9) and 2,6-{[Ph2P(O)][C(O)NEt2]CHCH2}2C5H3NO (10), should be able to adopt, with minimal strain, tridentate and pentadentate chelate structures, respectively. As a test of these predictions, selected lanthanide coordination chemistry of the N-oxide derivatives was explored. Crystal structure analyses reveal the formation of a tridentate NOPOCO chelate structure for a 1:1 Pr(III) complex containing 7 while 8 adopts a mixed bidentate/bridging monodentate POCO/NO binding mode with Pr(III). Tridentate and tetradentate chelate structures are obtained for several 1:1 complexes of 9 while a pentadentate chelate structure is observed with 10. Emission spectroscopy for one complex, [Eu(9)(NO3)3], in methanol, shows that the Eu(III) ion resides in a low-symmetry site. Lifetime measurements for methanol and deuterated methanol solutions indicate the presence of four methanol molecules in the inner coordination sphere of the metal ion, in addition to the ligand, with the nitrate anions most likely dissociated. The solvent extraction performance of 7-10 in 1,2-dichloroethane for Eu(III) and Am(III) in nitric acid solutions was analyzed and compared with the performance of 2,6-bis(di-n-octylphosphinoylmethyl)pyridine N-oxide (TONOPOP'O') and n-octyl(phenyl)-N,N-diisobutylcarbamoylmethylphosphine oxide (OPhDiBCMPO) measured under identical conditions.

Entities:  

Year:  2013        PMID: 23461540     DOI: 10.1021/ic3025342

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


  4 in total

1.  Crystal structures of 1-(4-chloro-phen-yl)-2-(di-phenyl-phosphor-yl)ethan-1-one and 1-(di-phenyl-phosphor-yl)-3,3-di-methyl-butan-2-one.

Authors:  Erin G Leach; Alyssa A Kulesza; Richard J Staples; Shannon M Biros
Journal:  Acta Crystallogr E Crystallogr Commun       Date:  2015-04-22

2.  Establishing Cost-Effective Computational Models for the Prediction of Lanthanoid Binding in [Ln(NO3)]2+ (with Ln = La to Lu).

Authors:  Charles C Peterson; Deborah A Penchoff; John D Auxier; Howard L Hall
Journal:  ACS Omega       Date:  2019-01-16

3.  Coinage Metal Complexes of Bis(quinoline-2-ylmethyl)phenylphosphine-Simple Reactions Can Lead to Unprecedented Results.

Authors:  Christin Kirst; Jonathan Tietze; Peter Mayer; Hans-Christian Böttcher; Konstantin Karaghiosoff
Journal:  ChemistryOpen       Date:  2022-02-10       Impact factor: 2.630

4.  Semirigid Ligands Enhance Different Coordination Behavior of Nd and Dy Relevant to Their Separation and Recovery in a Non-aqueous Environment.

Authors:  Alex Falco; Martina Neri; Matteo Melegari; Laura Baraldi; Giulia Bonfant; Matteo Tegoni; Angela Serpe; Luciano Marchiò
Journal:  Inorg Chem       Date:  2022-09-30       Impact factor: 5.436

  4 in total

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