Laboratory of Nitrogen Compounds, N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Leninsky Prosp., 47, 119991 Moscow, Russia.
Int J Mol Sci. 2023 Jan 31;24(3):2693. doi: 10.3390/ijms24032693.
An optimized synthetic protocol toward the assembly of Kuhn verdazyls based on an azo coupling of arenediazonium salts with readily available hydrazones followed by the base-mediated cyclization of in situ formed formazans with formalin was developed. The scope and limitations of the presented method were revealed. Some new mechanistic insights on the formation of Kuhn verdazyls were also conducted. It was found that in contradiction with previously assumed hypotheses, the synthesis of verdazyls was accomplished via an intermediate formation of verdazylium cations which were in situ reduced to leucoverdazyls. The latter underwent deprotonation under basic conditions to generate corresponding anions which coproportionate with verdazylium cations to furnish the formation of Kuhn verdazyls. The spectroscopic and electrochemical behavior of the synthesized verdazyls was also studied. Overall, our results may serve as a reliable basis for further investigation in the chemistry and applications of verdazyls.
开发了一种优化的合成方案,通过芳基重氮盐与易得的腙的偶联反应,然后通过原位形成的甲腙与甲醛的碱介导环化反应,来组装 Kuhn verdazyls。揭示了所提出方法的范围和限制。还对 Kuhn verdazyls 的形成进行了一些新的机理研究。结果发现,与以前假设的假说相反,verdazyls 的合成是通过 verdazylium 阳离子的中间形成来完成的,这些阳离子在原位被还原为 leucoverdazyls。后者在碱性条件下经历去质子化,生成相应的阴离子,与 verdazylium 阳离子共缩合生成 Kuhn verdazyls。还研究了合成 verdazyls 的光谱和电化学行为。总的来说,我们的结果可以为 verdazyls 的化学和应用的进一步研究提供可靠的基础。