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具有空间位阻和电子差异的 C3-取代基的氧代-均三嗪自由基的增强合成。

Enhanced synthesis of oxo-verdazyl radicals bearing sterically-and electronically-diverse C3-substituents.

机构信息

School of Natural Sciences - Chemistry, University of Tasmania, Hobart, Tasmania, Australia.

Research School of Chemistry, The Australia National University, Australian Capital Territory, Australia.

出版信息

Org Biomol Chem. 2021 Dec 1;19(46):10120-10138. doi: 10.1039/d1ob01946e.

Abstract

The synthetic viability of the hydrazine- and phosgene-free synthesis of 1,5-dimethyl oxo-verdazyl radicals has been improved a detailed study investigating the influence of the aryl substituent on tetrazinanone ring formation. Although it is well established that functionalisation at the C3 position of the tetrazinanone ring does not influence the nature of the radical, it is crucial in applications development. The synthetic route involves a 4-step sequence: Schiff base condensation of a carbohydrazide with an arylaldehyde, alkylation, ring closure then subsequent oxidation to the radical. We found that the presence of strong electron-donating substituents and electron rich heterocycles, result in a significant reduction in yield during both the alkylation and ring closure steps. This can, in part, be alleviated by milder alkylation conditions and further substitution of the aryl group. In comparison, more facile formation of the tetrazine ring was observed with examples containing electron-withdrawing groups and with - or -substitution. Density functional theory suggests that the ring closure proceeds the formation of an ion pair. Electron paramagnetic resonance spectroscopy provides insight into the precise electronic structure of the radical with small variations in hyperfine coupling constants revealing subtle differences.

摘要

已改进了无肼和光气的 1,5-二甲基氧代-氧化呋咱自由基的合成的综合可行性,详细研究了芳基取代基对四嗪酮环形成的影响。尽管已经证实四嗪酮环的 C3 位置的官能化不会影响自由基的性质,但它在应用开发中至关重要。合成路线涉及四步序列:碳水化合物与芳醛的席夫碱缩合、烷基化、环化,然后随后氧化为自由基。我们发现,强供电子取代基和富电子杂环的存在会导致烷基化和环化步骤的产率显着降低。通过温和的烷基化条件和进一步取代芳基,可以在一定程度上缓解这种情况。相比之下,含有吸电子基团和 - 或 - 取代基的例子中观察到更容易形成四嗪环。密度泛函理论表明,环化反应通过形成离子对进行。电子顺磁共振波谱提供了对自由基精确电子结构的深入了解,其超精细偶合常数的微小变化揭示了细微差别。

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