Kinetic studies on the reactions of macrocyclic complexes:: formation of mono- and bi-nuclear copper(II) complexes with a binucleating hexaazamacrocycle in slightly acidic solutions

被引:23
作者
Basallote, MG [1 ]
Durán, J [1 ]
Fernández-Trujillo, MJ [1 ]
Máñez, MA [1 ]
Szpoganicz, B [1 ]
机构
[1] Univ Cadiz, Fac Ciencias, Dept Ciencia Mat & Ingn Met & Quim Inorgan, Cadiz, Spain
来源
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS | 1999年 / 07期
关键词
D O I
10.1039/a809482i
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Reaction of the macrocycle 3,6,9,17,20,23-hexaazatricyclo[23.3.1.1(11,15)]triaconta-1(29),11(30),12,14,25,27-hexaene (L) with Cu-II in borate-mannitol buffers at pH close to 5 occurred with two kinetically separated steps that correspond to the formation of mono- and bi-nuclear complexes The rate constants for the two steps only differ by a factor of 7 and indicate that both metal ions are co-ordinated without significant interaction between them. However, the pH dependence of the rate constants suggests some kind of interaction of the buffering agent with the highly protonated forms of the macrocycle. Since this interaction is difficult to analyse due to the complex composition of the buffer, the kinetics of reaction have also been studied in the presence of the simpler acetate buffers. Complex formation also occurs in this case with two separate absorbance chances for the entry of both metal ions into the cavity of the macrocycle, and the analysis of the kinetic data is facilitated by a previous equilibrium study on the formation of ligand-acetate and Cu-L-acetate complexes. The stability constants of the species HxLx+ (x = 4, 5 or 6), H3CuL(ac)(4+), H2CuL(ac)(3+), Cu2L(ac)(3+) and Cu2L(ac)(OH)(2+) have been determined from potentiometric titrations and their values used to separate the contributions from the different reaction pathways to the rate constants for complex formation. Although then are several contributions to the rate constant for the formation of mono- and bi-nuclear complexes, the analysis of kinetic data indicates that complex formation occurs essentially through reaction between those species that minimise the electrostatic repulsion. The rate constants for the reaction between Cu2+ and H4L4+ (4.0 x 10(4) dm(3) mol(-1) s(-1)) and between Cu(ac)(2) and H2CuL(ac)(3+) (1.2 x 10(4) dm(3) mol(-1) s(-1)) are close to each other and also close to those previously reported for the formation of copper(II) complexes with the tetraprotonated forms of linear acyclic polyamines, which suggests that the macrocycle is flexible enough to make rapid any reorganisation step required for complex formation.
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页码:1093 / 1100
页数:8
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