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Equilibria in cobalt(II)–amino acid–imidazole system under oxygen-free conditions: effect of side groups on mixed-ligand systems with selected L-α-amino acids

机译:无氧条件下钴(II)-氨基酸-咪唑系统的平衡:侧基对具有选定L-α-氨基酸的混合配体系统的影响

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摘要

BackgroundHeteroligand Co(II) complexes involving imidazole and selected bio-relevant L-α-amino acids of four different groups (aspartic acid, lysine, histidine and asparagine) were formed by using a polymeric, pseudo-tetrahedral, semi-conductive Co(II) complex with imidazole–[Co(imid)2]n as starting material. The coordination mode in the heteroligand complexes was unified to one imidazole in the axial position and one or two amino acid moieties in the appropriate remaining positions. The corresponding equilibrium models in aqueous solutions were fully correlated with the mass and charge balance equations, without any of the simplified assumptions used in earlier studies. Precise knowledge of equilibria under oxygen-free conditions would enable evaluation of the reversible oxygen uptake in the same Co(II)–amino acid–imidazole systems, which are known models of artificial blood-substituting agents.
机译:背景通过使用聚合的拟四面体半导电Co(II)形成涉及咪唑和四个不同组(天冬氨酸,赖氨酸,组氨酸和天冬酰胺)的选定的生物相关L-α-氨基酸的杂配Co(II)配合物)与咪唑– [Co(imid)2] n的配合物为起始原料。杂配体配合物中的配位方式在轴向位置统一为一个咪唑,在适当的剩余位置统一为一个或两个氨基酸部分。水溶液中相应的平衡模型与质量和电荷平衡方程完全相关,而没有早期研究中使用的任何简化假设。在无氧条件下对平衡的精确了解将有助于评估在相同的Co(II)-氨基酸-咪唑系统中的可逆氧气吸收,这是已知的人工血液替代剂模型。

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