McEvoy James P, Pham Nhan V, Le Hong T, Fernandez Micah M, Farmer Ryan P, Mahapatro Surendra N
Centre for Biomedical Sciences, School of Biological Sciences, Royal Holloway University of London Egham Surrey TW20 0EX UK
Department of Chemistry, Regis University Denver Colorado 80221 USA.
RSC Adv. 2018 Dec 13;8(73):41762-41766. doi: 10.1039/c8ra05948a. eCollection 2018 Dec 12.
The electrochemistry of aryl diazonium salts is usually dominated by one-electron reduction, loss of dinitrogen, and the grafting of aryl radicals onto the electrode. In contrast, -nitro- and -cyanobenzene diazonium salts dissolved in mixed aqueous-acetonitrile solvents showed diffusion-limited, quasi-reversible, two-electron cyclic voltammetry. Voltammetric pH-dependence and spectrophotometric kinetic studies suggest that the basicity and low polarity of the aqueous solvent mixture has revealed the biologically-significant interconversion of diazohydroxide and diazene.
芳基重氮盐的电化学通常以单电子还原、氮气损失以及芳基自由基接枝到电极上为主导。相比之下,溶解在乙腈-水混合溶剂中的对硝基苯重氮盐和对氰基苯重氮盐表现出扩散限制的、准可逆的双电子循环伏安法。伏安法的pH依赖性和分光光度动力学研究表明,水性溶剂混合物的碱性和低极性揭示了重氮氢氧化物和重氮烯之间具有生物学意义的相互转化。