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CHARACTERIZATION OF A NOVEL DIOXOMOLYBDENUM COMPLEX BY CYCLIC VOLTAMMETRY

机译:循环伏安法表征新型二氧钼络合物

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摘要

Metalloenzymes that carry a pterin-based molybdenum cofactor in their center catalyze numerous reactions in the human body and play a crucial role in its metabolism. Specifically, these enzymes promote redox reactions and oxygen transport in the body. Their absence may cause many problems leading to disability or even death in early childhood. Therefore, model compounds need to be synthesized and analyzed to investigate the reactivity, redox potential, and geometry of these cofactors. This study focused on electrode processes and determined the redox potentials of the new bis-(4-mercapto-5-(p-tolyl)-3H-1,2-dithiole-3-thione)-dioxomolybdenum complex by cyclic voltammetry. The 4-mercapto-5-(p-tolyl)-3H-1,2-dithiole-3-thione ligand underwent irreversible oxidation and reduction at thiol and thione functional groups. The new dioxomolybdenum complex showed a quasi-reversible two-stage electrode process.
机译:在中心带有基于蝶呤的钼辅因子的金属酶催化人体中的许多反应,并在其代谢中起关键作用。具体而言,这些酶促进体内的氧化还原反应和氧气运输。他们的缺席可能会导致许多问题,导致儿童早期残疾甚至死亡。因此,需要对模型化合物进行合成和分析,以研究这些辅助因子的反应性,氧化还原电位和几何形状。这项研究的重点是电极工艺,并通过循环伏安法测定了新的双-(4-巯基-5-(对甲苯基)-3H-1,2-二硫代-3-硫酮)-二氧钼配合物的氧化还原电位。 4-巯基-5-(对甲苯基)-3H-1,2-二硫基-3-硫酮配体在硫醇和硫酮官能团上发生不可逆的氧化和还原。新的二氧钼钼配合物显示出准可逆的两阶段电极工艺。

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