Literature DB >> 27184620

Binding of oxime group to uranyl ion.

Sokratis T Tsantis1, Eirini Zagoraiou1, Aikaterini Savvidou2, Catherine P Raptopoulou2, Vassilis Psycharis2, Lukasz Szyrwiel3, Małgorzata Hołyńska4, Spyros P Perlepes5.   

Abstract

Currently, the leading approach for extraction of uranium from seawater is selective sorption of UO2(2+) ions onto a poly(acrylamidoxime) fiber. Amidoxime functional groups are the most studied extractant moieties for this application, but are not perfectly selective, and understanding how these groups (and more generally the oxime groups) interact with UO2(2+) and competing ions in seawater is an important step in designing better extractants. We have started a new research programme aiming at in-depth studies of the uranyl-oxime/amidoxime interactions and we report here our first results which cover aspects of the coordination chemistry of 2-pyridyl ketoximes towards UO2(2+). Detailed synthetic investigations of various UO2(2+)/mepaoH and UO2(2+)/phpaoH reaction systems (mepaoH is methyl 2-pyridyl ketoxime and phpaoH is phenyl 2-pyridyl ketoxime) have provided access to the complexes [UO2(mepao)2(MeOH)2]{[UO2(NO3)(mepao)(MeOH)2]}2 (), [UO2(mepao)2(MeOH)2] (), [(UO2)2(O2)(O2CMe)2(mepaoH)2] () and [UO2(phpao)2(MeOH)2] (). The peroxido group in , which was isolated without the addition of external peroxide sources, probably arises from a bis(aquo)- and/or bis(hydroxido)-bridged diuranyl precursor in solution followed by photochemical oxidation of the bridging groups. The U(VI) atom in the [UO2(NO3)(mepao)(MeOH)2] molecules of () is surrounded by one nitrogen and seven oxygen atoms in a very distorted hexagonal bipyramidal geometry; two oxygen atoms from the terminal MeOH ligands, two oxygen atoms from the bidentate chelating nitrato group, and the oxygen and nitrogen atoms from the η(2) oximate group of the 1.110 (Harris notation) mepao(-) ligand define the equatorial plane. This plane consists of two terminal MeOH ligands and two η(2) oximate groups in the [UO2(mepao)2(MeOH)2] molecule () of . The structure of the [UO2(mepao)2(MeOH)2] molecule that is present in is very similar to the structure of the corresponding molecule in . The structure of the dinuclear molecule that is present in consists of two {UO2(O2CMe)(mepaoH)}(+) units bridged by a η(2):η(2):μ O2(2-) group. The equatorial plane of each uranyl site is composed of the pyridyl and oxime nitrogen atoms of a 1.011 mepaoH ligand, the oxygen atoms of an almost symmetrically coordinated bidentate chelating MeCO2(-) group and the two oxygen atoms of the peroxido groups. The core molecular structure of is similar to that of , the only difference being the presence of 1.110 phpao(-) ligands in the former instead of mepao(-) groups in the latter. The free pyridyl nitrogen atoms of mepao(-) and phpao(-) ligands of , and are acceptors of intramolecular H bonds from the ligated MeOH oxygen atoms. H-bonding and π-π stacking interactions build interesting supramolecular networks in the crystal structures of the four complexes. Compounds are the first structurally characterized uranyl complexes with 2-pyridyl aldoximes or ketoximes as ligands. IR data are discussed in terms of the coordination modes of the ligands in the complexes. (1)H NMR data in DMSO-d6 suggest that the complexes decompose in solution. The ESI(-) MS spectrum of dissolved in the NH4(O2CMe) buffer is indicative of the presence of [UO2(O2CMe)3](-), [UO2(O2CMe)2(phpao)](-), [UO2(O2CMe)(phpao)2](-) and [UO2(phpao)3](-) species. A common structural motif of the complexes containing the anionic mepao(-) (, ) and phpao(-) () ligands is that the deprotonated oximate group prefers to bind in the η(2) fashion forming a 3-membered chelating ring in spite of the presence of a pyridyl nitrogen atom, whose coordination would be expected to lead to 5- or 6-membered chelating rings.

Entities:  

Year:  2016        PMID: 27184620     DOI: 10.1039/c6dt01293k

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  9 in total

1.  Two different coordination modes of the Schiff base derived from ortho-vanillin and 2-(2-aminomethyl)pyridine in a mononuclear uranyl complex.

Authors:  Sokratis T Tsantis; Zoi G Lada; Demetrios I Tzimopoulos; Vlasoula Bekiari; Vassilis Psycharis; Catherine P Raptopoulou; Spyros P Perlepes
Journal:  Heliyon       Date:  2022-06-11

2.  Application of poly(amidoxime)/scrap facemasks in extraction of uranium from seawater: from dangerous waste to nuclear power.

Authors:  Xue Zhang; Bo Ouyang; Guangshun Hou; Pengpeng Chang; Dadong Shao
Journal:  J Radioanal Nucl Chem       Date:  2022-07-07       Impact factor: 1.754

3.  Synthesis, Characterization and Biological Activities of New Schiff Base Compound and Its Lanthanide Complexes.

Authors:  Abdel-Aziz Abu-Yamin; Maisa Siddiq Abduh; Sultan Ayesh Mohammed Saghir; Naif Al-Gabri
Journal:  Pharmaceuticals (Basel)       Date:  2022-04-07

4.  Matrix-Independent Surface-Enhanced Raman Scattering Detection of Uranyl Using Electrospun Amidoximated Polyacrylonitrile Mats and Gold Nanostars.

Authors:  Grace Lu; Adam J Johns; Binita Neupane; Hoa T Phan; David M Cwiertny; Tori Z Forbes; Amanda J Haes
Journal:  Anal Chem       Date:  2018-05-17       Impact factor: 6.986

5.  Modeling the Solvent Extraction of Cadmium(II) from Aqueous Chloride Solutions by 2-pyridyl Ketoximes: A Coordination Chemistry Approach.

Authors:  Eleni C Mazarakioti; Amaia Soto Beobide; Varvara Angelidou; Constantinos G Efthymiou; Aris Terzis; Vassilis Psycharis; George A Voyiatzis; Spyros P Perlepes
Journal:  Molecules       Date:  2019-06-13       Impact factor: 4.411

Review 6.  Oligonuclear Actinoid Complexes with Schiff Bases as Ligands-Older Achievements and Recent Progress.

Authors:  Sokratis T Tsantis; Demetrios I Tzimopoulos; Malgorzata Holynska; Spyros P Perlepes
Journal:  Int J Mol Sci       Date:  2020-01-15       Impact factor: 5.923

7.  Confirming the Molecular Basis of the Solvent Extraction of Cadmium(II) Using 2-Pyridyl Oximes through a Synthetic Inorganic Chemistry Approach and a Proposal for More Efficient Extractants.

Authors:  Anastasia Routzomani; Zoi G Lada; Varvara Angelidou; Catherine P Raptopoulou; Vassilis Psycharis; Konstantis F Konidaris; Christos T Chasapis; Spyros P Perlepes
Journal:  Molecules       Date:  2022-02-28       Impact factor: 4.411

8.  Uranium(VI) Complexes with a Calix[4]arene-Based 8-Hydroxyquinoline Ligand: Thermodynamic and Structural Characterization Based on Calorimetry, Spectroscopy, and Liquid-Liquid Extraction.

Authors:  Anne Bauer; Astrid Jäschke; Sebastian Schöne; Robert Barthen; Juliane März; Katja Schmeide; Michael Patzschke; Berthold Kersting; Karim Fahmy; Jana Oertel; Vinzenz Brendler; Thorsten Stumpf
Journal:  ChemistryOpen       Date:  2018-06-19       Impact factor: 2.911

9.  Dinuclear Lanthanide(III) Complexes from the Use of Methyl 2-Pyridyl Ketoxime: Synthetic, Structural, and Physical Studies.

Authors:  Christina D Polyzou; Helen Nikolaou; Catherine P Raptopoulou; Konstantis F Konidaris; Vlasoula Bekiari; Vassilis Psycharis; Spyros P Perlepes
Journal:  Molecules       Date:  2021-03-15       Impact factor: 4.411

  9 in total

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