金属(II)离子与氨基酸和硫代巴比妥酸二元和三元配合物的稳定常数和形态的电位学研究

Kayode Taiwo Ishola, M. A. Oladipo, O. A. Odedokun, Oladapo Tunde Olanipekun
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引用次数: 2

摘要

由于几种螯合剂能够与不同的金属离子形成稳定的配合物,它们被广泛用作清除剂,将金属运送到或离开易受伤害的部位。据报道,许多螯合剂是有毒的,不可生物降解的,并且不灵活,无法恢复结合的金属离子。这些螯合剂固有的缺点需要寻找它们的替代品。因此,在离子强度维持在0.02M NaNO3的条件下,用电位法研究了l -酪氨酸、l -组氨酸(二级配体)和硫代巴比妥酸(一级配体)在27℃和35℃水溶液中与Co(II)、Cu(II)和Pb(II)的配位程度。电位平衡测量表明配体与金属离子形成二元和三元配合物。三元配合物是由同步机制形成的,它们比相应的二元配合物更稳定。稳定性的顺序随金属离子共价指数的升高而增大,随温度的升高而减小。物种形态图显示了二元和三元配合物的稳定性常数随ph值的变化。配体具有很高的配位性,可以作为金属清除剂,将金属运送到或离开脆弱位点。二元金属配合物可作为化学药物转运到靶点或解毒具有螯合能力的供体原子的有毒物质的介质。
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Potentiometric Studies of Stability Constants and Speciation of Binary and Ternary Complexes of Metal (II) Ions with Amino Acids and Thiobarbituric Acid
Several chelating agents have been widely used as scavengers to transport metals to or away from vulnerable sites due to their ability to form stable complexes with different metal ions. Many of the chelating agents have been reported to be toxic, non-biodegradable and inflexible for the recovery of bound metal ions. The inherent drawbacks with these chelating agents necessitate a search for their replacement. Therefore, the extent of coordination of L-tyrosine, L-histidine (secondary ligands) and Thiobarbituric acid (primary ligand) with Co(II), Cu(II) and Pb(II) in an aqueous medium at 27°C and 35°C has been examined potentiometrically with ionic strength maintained by 0.02M NaNO3. The potentiometric equilibrium measurements showed that the ligands formed binary and ternary complexes with the metal ions. Ternary complexes were formed by simultaneous mechanisms and they were found to be more stable than the corresponding binary complexes. The order of stability was found to increase with an increase in the covalent index of the metal ions and decrease with increase in temperature. Speciation diagram showed the variation in stability constants of the binary and ternary complexes as the function of pH. The ligands exhibited high coordinating properties and could be used as metal scavengers for transportation of metals to or away from vulnerable sites. The binary metal complexes could be applied as a medium of transporting chemotherapeutic drugs to target sites or detoxifying poisonous substances which possesses donor atoms with chelating capability.
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