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Characterization of lapachol in artificial organic-film membrane: Application for the trans-membrane transport of Mg~(2+)

机译:人造有机膜中拉帕胆的表征:在Mg〜(2+)跨膜转运中的应用

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摘要

Species transfer across a liquidiliquid interface is studied by means of a thin film-modified electrode using cyclic voltammetry and square-wave voltammetry. The thin film-modified electrode consists of an edge plane pyrolytic graphite electrode (EPG) covered with a thin film of a water-immiscible electro- inactive organic solvent (nitrobenzene) containing a neutral redox probe and/or a suitable electrolyte. For this study we used, as redox probe in the organic phase, 2-hydroxy-3-isopropenyl-1,4-naphthoquinone also known as lapachol (Q) and an appropriate electrolyte. The redox transformations of Q at the graphite electrode/organic (EGINB) interface was coupled to an ion-transfer reaction from aqueous to organic phase. The proton transfer at the nitrobenzene/water (NBIW) interface is essential for the electrochemical conversion of Q within the membrane. The voltammograms obtained are influenced by the pH of the aqueous phase. Q has two reduction systems due to the redox transformation of its two tautomeric forms resulting from the migration of a proton between the hydroxyl group in position 2 and the carbonyl group in position 4. The electrochemical mechanism consist of 2e -/2H~+ exchange to form the separate redox compounds H 2Q The experiments conducted reveal the ability of both tautomers to form 1:1 complexes with Mg~(w2hen this ca+tion is pres)ent in the aqueous phase.
机译:通过使用循环伏安法和方波伏安法的薄膜修饰电极研究跨液-液界面的物种转移。薄膜修饰电极由覆盖有中性氧化还原探针和/或合适电解质的水不混溶电惰性有机溶剂(硝基苯)薄膜覆盖的边缘平面热解石墨电极(EPG)组成。在本研究中,我们使用2-羟基-3-异丙烯基-1,4-萘醌(也称为拉帕胆酚(Q))和适当的电解质作为有机相中的氧化还原探针。石墨电极/有机物(EGINB)界面上的Q的氧化还原转化与从水相到有机相的离子转移反应耦合。硝基苯/水(NBIW)界面处的质子转移对于Q在膜内的电化学转化至关重要。所得的伏安图受水相pH的影响。由于质子在位置2的羟基和位置4的羰基之间迁移,Q的两个互变异构形式进行了氧化还原转化,因此Q具有两个还原体系。电化学机理由2e-/ 2H〜+交换为形成单独的氧化还原化合物H 2Q进行的实验揭示了两种互变异构体与Mg〜(当存在这种阳离子时在水相中)形成1:1配合物的能力。

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