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首页> 外文期刊>RSC Advances >Mechanistic study on substitution reaction of a citrato(p-cymene)Ru(ii) complex with sulfur-containing amino acids
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Mechanistic study on substitution reaction of a citrato(p-cymene)Ru(ii) complex with sulfur-containing amino acids

机译:柠檬酸(对-cymene)Ru(ii)配合物与含硫氨基酸的取代反应机理研究

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The reactions of a dichloro( p -cymene)ruthenium( II ) dimer, [RuCl _(2) ( p -cymene)] _(2) , with citric acid and sulfur-containing amino acids gave only [Ru(L)( p -cymene)]-type complexes (L = citrate (Cit), L -penicillaminate ( L -Pen), S -methyl- L -cysteinate ( S -Me- L -Cys) and L -methioninate ( L -Met)) in aqueous solutions at various pHs and molar ratios of the reactants, where Cit and the amino acids act as a tridentate ligand. These sulfur-containing amino acid complexes with bound nitrogen, oxygen and sulfur atoms and η ~(6) - p -cymene take S absolute configuration around Ru( II ) selectively, having the α-proton oriented in the opposite direction from the Ru( II ) center. The concentration dependences of the observed pseudo-first-order rate constants were provided for the substitution reactions of the citrato complex, [Ru(Cit)( p -cymene)], with a large excess of the sulfur-containing amino acids at various temperatures at pH 7.3, where solvolysis path was observed for S -Me- L -Cys and L -Met as an intercept but not for L -Pen. The activation parameters for the substitution reactions by the direct attack of the amino acids were changed significantly, indicating that the reaction mechanism varies sensitively with the amino acids from an associative mechanism to an interchange one. The pH dependences of the rate constants of the substitution reactions suggest that the carboxylate group is an attacking group for S -Me- L -Cys and L -Met under neutral conditions and the thiol group of L -Pen acts as an entering group constantly at any pH showing a considerably smaller activation energy compared with S -Me- L -Cys and L -Met. Differences in stabilities of the amino acid complexes were obtained from the equilibrium constants for the substitution reactions between the amino acids. These results indicate that the activation energies for the substitution reactions of the citrato complex with the amino acids are moderately correlated with the stabilities of the formed amino acid complexes.
机译:二氯对苯甲基钌(II)二聚体[RuCl _(2)(对苯甲基)] _(2)与柠檬酸和含硫氨基酸的反应仅给出[Ru(L)( (对-cymene)]型复合物(L =柠檬酸盐(Cit),L-青霉酸酯(L -Pen),S-甲基-L-半胱氨酸(S -Me-L -Cys)和L-蛋氨酸(L -Met) )在各种pH和反应物摩尔比的水溶液中,其中Cit和氨基酸充当三齿配体。这些具有结合的氮,氧和硫原子以及η〜(6)-p-Cymene的含硫氨基酸络合物在Ru(II)周围选择性地具有S绝对构型,其α质子的取向与Ru(II)相反。 II)中心。在不同温度下,为柠檬醛配合物[Ru(Cit)(p -cymene)]的取代反应提供了观察到的拟一级反应速率常数的浓度依赖性。在pH 7.3下,观察到S -Me-L -Cys和L -Met的溶剂分解路径为截距,但L -Pen没有。由氨基酸的直接攻击引起的取代反应的激活参数发生了显着变化,表明反应机理随氨基酸从关联机理到互换机理而敏感地变化。取代反应速率常数的pH依赖性表明,在中性条件下,羧酸酯基是S -Me- L -Cys和L -Met的攻击基团,而L -Pen的硫醇基在与S -Me- L -Cys和L -Met相比,任何pH都显示出显着较小的活化能。从氨基酸之间的取代反应的平衡常数获得氨基酸复合物的稳定性的差异。这些结果表明,柠檬醛配合物与氨基酸的取代反应的活化能与所形成的氨基酸配合物的稳定性适度相关。

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