Complexation of Pu(IV) with the natural siderophore desferrioxamine B and the redox properties of Pu(IV)(siderophore) complexes

被引:49
作者
Boukhalfa, Hakim [1 ]
Reilly, Sean D. [1 ]
Neu, Mary P. [1 ]
机构
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
关键词
D O I
10.1021/ic061544q
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The bioavailability and mobility of Pu species can be profoundly affected by siderophores and other oxygen-rich organic ligands. Pu(IV)(siderophore) complexes are generally soluble and may constitute with other soluble organo-Pu(IV) complexes the main fraction of soluble Pu(IV) in the environment. In order to understand the impact of siderophores on the behavior of Pu species, it is important to characterize the formation and redox behavior of Pu(siderophore) complexes. In this work, desferrioxamine B (DFO-B) was investigated for its capacity to bind Pu(IV) as a model siderophore and the properties of the complexes formed were characterized by optical spectroscopy measurements. In a 1:1 Pu(IV)/DFO-B ratio, the complexes Pu(IV)(H2DFO-B)(4+), Pu(IV)(H1DFO-B)(3+), Pu(IV)(DFO-B)(2+), and Pu(IV)(DFO-B)(OH)(+) form with corresponding thermodynamic stability constants log beta(1,1,2) = 35.48, log beta(1,1,1) = 34.87, log beta(1,1,0) = 33.98, and log beta(1,1,-1) = 27.33, respectively. In the presence of excess DFO-B, the complex Pu(IV)H-2(DFO-B)(2)(2+) forms with the formation constant log beta(2,1,2) = 62.30. The redox potential of the complex Pu(IV)H-2(DFO-B)(2)(2+) was determined by cyclic voltammetry to be E-1/2 = -0.509 V, and the redox potential of the complex Pu(IV)(DFO-B)(2+) was estimated to be E-1/2 = -0.269 V. The redox properties of Pu(IV)(DFO-B)(2+) complexes indicate that Pu(III)(siderophore) complexes are more than 20 orders of magnitude less stable than their Pu(IV) analogues. This indicates that under reducing conditions, stable Pu(siderophore) complexes are unlikely to persist.
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页码:1018 / 1026
页数:9
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共 35 条
[1]   HYDROXAMATKOMPLEXE .2. DIE ANWENDUNG DER PH-METHODE [J].
ANDEREGG, G ;
SCHWARZENBACH, G ;
LEPLATTE.F .
HELVETICA CHIMICA ACTA, 1963, 46 (04) :1400-&
[2]  
[Anonymous], 1992, DETERMINATION USE ST
[3]   STRUCTURAL CHEMISTRY OF GALLIUM(III) - CRYSTAL-STRUCTURES OF K3[GA(CATECHOLATE)3)].1.5H2O AND [GA(BENZOHYDROXAMATE)3].H2O.CH3CH2OH [J].
BORGIAS, BA ;
BARCLAY, SJ ;
RAYMOND, KN .
JOURNAL OF COORDINATION CHEMISTRY, 1986, 15 (02) :109-123
[4]  
Bouby M, 1998, RADIOCHIM ACTA, V80, P95
[5]   EDTA and mixed-ligand complexes of tetravalent and trivalent plutonium [J].
Boukhalfa, H ;
Reilly, SD ;
Smith, WH ;
Neu, MP .
INORGANIC CHEMISTRY, 2004, 43 (19) :5816-5823
[6]   Iron(III) coordination properties of a pyoverdin siderophore produced by Pseudomonas putida ATCC 33015 [J].
Boukhalfa, Hakim ;
Reilly, Sean D. ;
Michalczyk, Ryszard ;
Iyer, Srinivas ;
Neu, Mary P. .
INORGANIC CHEMISTRY, 2006, 45 (14) :5607-5616
[7]  
Burns C.J., 2004, Comprehensive Coordination Chemistry II, V3, P189
[8]  
Crumbliss A. L., 1991, HDB MICROBIAL IRON C, P177
[9]   METAL-ION RECOGNITION IN LIGANDS WITH NEGATIVELY CHARGED OXYGEN DONOR GROUPS - COMPLEXATION OF FE(III), GA(III), IN(III), AL(III), AND OTHER HIGHLY CHARGED METAL-IONS [J].
EVERS, A ;
HANCOCK, RD ;
MARTELL, AE ;
MOTEKAITIS, RJ .
INORGANIC CHEMISTRY, 1989, 28 (11) :2189-2195
[10]   The rates and mechanisms of water exchange of actinide aqua ions:: A variable temperature 17O NMR study of U(H2O)104+, UF(H2O)93+, and Th(H2O)104+ [J].
Farkas, I ;
Grenthe, I ;
Bányai, I .
JOURNAL OF PHYSICAL CHEMISTRY A, 2000, 104 (06) :1201-1206