Study of complex formation between 18-crown-6 and diaza-18-crown-6 with uranyl cation (UO22+) in some binary mixed aqueous and non-aqueous solvents

被引:0
作者
M. Ansari Fard
G. H. Rounaghi
M. Chamsaz
K. Taheri
机构
[1] The University of Sistan and Baluchestan,Department of Chemistry, Faculty of Sciences
[2] Ferdowsi University of Mashhad,Department of Chemistry, Faculty of Sciences
来源
Journal of Inclusion Phenomena and Macrocyclic Chemistry | 2009年 / 64卷
关键词
18-Crown-6; Diaza-18-crown-6; UO; cation; Binary mixed aqueous and non-aqueous solvents; Conductometry;
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摘要
The complexation reaction between UO22+ cation with macrocyclic ligand, 18-crown-6 (18C6), was studied in acetonitrile–methanol (AN–MeOH), nitromethane–methanol (NM–MeOH) and propylencarbonate–ethanol (PC–EtOH) binary mixed systems at 25 °C. In addition, the complexation process between UO22+ cation with diaza-18-crown-6 (DA18C6) was studied in acetonitrile–methanol (AN–MeOH), acetonitrile–ethanol (AN–EtOH), acetonitrile–ethylacetate (AN–EtOAc), methanol–water (MeOH–H2O), ethanol–water (EtOH–H2O), acetonitrile–water (AN–H2O), dimethylformamide–methanol (DMF–MeOH), dimethylformamide–ethanol (DMF–EtOH), and dimethylformamide–ethylacetate (DMF–EtOAc) binary solutions at 25 °C using the conductometric method. The conductance data show that the stoichiometry of the complexes formed between (18C6) and (DA18C6) with UO22+ cation in most cases is 1:1 [M:L], but in some solvent 1:2 [M:L2] complex is formed in solutions. The values of stability constants (log Kf) of (18C6 · UO22+) and (DA18C6 · UO22+) complexes which were obtained from conductometric data, show that the nature and also the composition of the solvent systems are important factors that are effective on the stability and even the stoichiometry of the complexes formed in solutions. In all cases, a non-linear relationship is observed for the changes of stability constants (log Kf) of the (18C6 · UO22+) and (DA18C6 · UO22+) complexes versus the composition of the binary mixed solvents. The stability order of (18C6 · UO22+) complex in pure studied solvents was found to be: EtOH > AN ≈ NM > PC ≈ MeOH, but in the case of (DA18C6 · UO22+) complex it was : H2O > MeOH > EtOH.
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页码:49 / 56
页数:7
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共 105 条
[1]  
Pedersen CJ(1967)Cyclic polyether and their complexes with metal salts J. Am. Chem. Soc. 89 7017-7036
[2]  
Izatt RM(1991)Thermodynamic and kinetic data for macrocyclic interaction with cations and anions Chem. Rev. 91 1721-2085
[3]  
Pawlak K(1984)Sodium ion-selective electrode based on crown ether–phosphotungstic acid precipitates Analyst (Lond.) 109 641-643
[4]  
Bradshaw JS(2002)Cesium ion-selective electrode based on Calix(4) crown ether–ester Talanta 58 445-450
[5]  
Jeng J(2004)Mercury(II) ion-selective electrode based on P-tert butyl CAlix[4] crowns with imine units Anal. Sci. 20 811-814
[6]  
Shin JS(1983)A study on the extraction of rare earth elements with crown ethers J. Nucl. Radiochem. 05 146-153
[7]  
Mahajan RK(1995)Lithium isotope separation by chemical exchange with polymer-bound aza-crown compounds J. Radioanal. Nucl. Chem. 189 219-227
[8]  
Kumar M(2002)Chromatographic separation of lithium isotopes with silica based mono benzo-15-crown-5 resin J. Nucl. Sci. Technol. 39 279-281
[9]  
Sharma V(2006)Chromatographic zinc isotope separation by phenol formaldehyde benzo crown resin J. Chromatogr. A 1113 182-185
[10]  
Kaur I(2003)Chemical sensor for lanthanum(III) determination using aza-crown as ionophore in polyvinyl chloride matrix Anal. Chim. Acta 486 199-207