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Electron transfer in non-oxovanadium(IV) and (V) complexes: Kinetic studies of an amavadin model

机译:非氧钒(IV)和(V)络合物中的电子转移:amavadin模型的动力学研究

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摘要

Electron-transfer reactions of the eight-coordinate vanadium complex, bis-(N-hydroxyiminodiacetate)vanadium(IV) [V(HIDA)(2)](2-), a synthetic analog of amavadin with ascorbic acid and hexachloroiridate(IV), have been studied. The self-exchange rate constant for this analog has been calculated from oxidation and reduction cross-reactions using Marcus theory and directly measured using V-51 NMR paramagnetic line-broadening techniques. The average self-exchange rate constant for the bis-HIDA vanadium(IV/V) couple equals 1.5 x 10(5) M-1 s(-1). The observed rate enhancements are proposed to be due to the small structural differences between the oxidized and reduced forms of the HIDA complex and inner-sphere reorganizational energies. The electron-transfer reaction of this synthetic analog is experimentally indistinguishable from amavadin itself, although significant differences exist in the reduction potential of these compounds. This suggests that ligand modification effects the thermodynamic driving force and not the self-exchange process.
机译:八配位钒配合物双-(N-羟基亚氨基二乙酸酯)钒(IV)[V(HIDA)(2)](2-)的电子转移反应,这是一种由抗坏血酸和六氯铱酸盐(IV)合成的阿马伐丁。 ,已被研究。该类似物的自交换速率常数是使用Marcus理论从氧化和还原交叉反应计算得出的,并使用V-51 NMR顺磁性线展宽技术直接测量。双-HIDA钒(IV / V)对的平均自交换率常数等于1.5 x 10(5)M-1 s(-1)。提出观察到的速率增强是由于HIDA复合物的氧化形式和还原形式与内球重组能之间的结构差异很小。尽管这些化合物的还原电位存在显着差异,但该合成类似物的电子转移反应在实验上与金刚烷胺本身没有区别。这表明配体修饰影响热力学驱动力而不影响自交换过程。

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