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Electrochemical reduction of 3-phenyl-1, 2-benzisoxazole 2-oxide on boron-doped diamond

机译:掺硼金刚石上电化学还原3-苯基-1,2-苯并恶唑2-氧化物

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The bioreduction of N-oxide compounds is the basis for the mode of action of a number of biologically active molecules. These compounds are thought to act by forming a reactive oxygen species through an intracellular reduction and subsequent redox cycling process within the organism. With these results in mind, the preliminary investigation into the electrochemical reduction of the benzisoxazole 2-oxide ring system was undertaken, with the thought that this class of compounds would reduce in a similar fashion to other N-oxide heterocycles. The electrochemical reduction of 3-phenyl-1,2-benzisoxazole 2-oxide on boron-doped diamond was studied using cyclic and square wave voltammetry as well as controlled potential electrolysis and HPLC for qualitative identification of the reaction products. It was found that the reduction proceeded with an initial quasi-reversible one-electron reduction followed by the very fast cleavage of either the endocyclic or exocyclic N-O bond. Subsequent electron transfer and protonation resulted in an overall two-electron reduction and formation of the 2-hydroxyaryl oxime and benzisoxazole. These results are analogous to those observed in the electrochemical reduction of other heterocyclic N-oxides albeit the reduction of the benzisoxazole N-oxides takes place at a more negative potential. However, these encouraging results warrant further investigation into the reduction potential of substituted benzisoxazole N-oxides as well as to elucidate and characterize the nature of the intermediate species involved.
机译:N-氧化物化合物的生物还原是许多生物活性分子作用方式的基础。人们认为这些化合物通过生物体内的细胞内还原和随后的氧化还原循环过程形成活性氧而起作用。考虑到这些结果,对苯并异恶唑2-氧化物环系统的电化学还原进行了初步研究,认为这类化合物将以与其他N-氧化物杂环类似的方式还原。使用循环和方波伏安法,可控电位电解和HPLC对反应混合物进行定性鉴定,研究了在掺硼金刚石上电化学还原3-苯基-1,2-苯并恶唑2-氧化物的方法。已经发现,还原是从初始的准可逆单电子还原开始的,然后是内环或外环N-O键的非常快的断裂。随后的电子转移和质子化导致2-羟基芳基肟和苯并异恶唑的整体两电子还原和形成。这些结果类似于在其他杂环N-氧化物的电化学还原中观察到的结果,尽管苯并异恶唑N-氧化物的还原在更负的电位下发生。但是,这些令人鼓舞的结果值得进一步研究取代的苯并异恶唑N-氧化物的还原潜力,以及阐明和表征所涉及的中间物种的性质。

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