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通过可逆共价键实现的腈与活性亚甲基基团和双亲性2-吡啶基硒试剂之间的多样环化途径

Diverse Cyclization Pathways Between Nitriles with Active -Methylene Group and Ambiphilic 2-Pyridylselenyl Reagents Enabled by Reversible Covalent Bonding.

作者信息

Artemjev Alexey A, Sapronov Alexander A, Kubasov Alexey S, Peregudov Alexander S, Novikov Alexander S, Egorov Anton R, Khrustalev Victor N, Borisov Alexander V, Matsulevich Zhanna V, Shikhaliyev Namiq G, Nenajdenko Valentine G, Gomila Rosa M, Frontera Antonio, Kritchenkov Andreii S, Tskhovrebov Alexander G

机构信息

Research Institute of Chemistry, Peoples' Friendship University of Russia, 6 Miklukho-Maklaya Street, 117198 Moscow, Russia.

Kurnakov Institute of General and Inorganic Chemistry, 31 Leninsky Prospekt, 119991 Moscow, Russia.

出版信息

Int J Mol Sci. 2024 Nov 28;25(23):12798. doi: 10.3390/ijms252312798.

Abstract

Herein, we describe a novel coupling between ambiphilic 2-pyridylselenyl reagents and nitriles featuring an active α-methylene group. Depending on the solvent employed, this reaction can yield two distinct types of cationic pyridinium-fused selenium-containing heterocycles, 1,3-selenazolium or 1,2,4-selenadiazolium salts, in high yields. This is in contrast to what we observed before for other nitriles. Notably, the formation of selenadiazolium is reversible, gradually converting into the more thermodynamically stable selenazolium product in solution. Our findings reveal, for the first time, the reversible nature of 1,3-dipolar cyclization between the CN triple bond and 2-pyridylselenyl reagents. Nitrile substitution experiments in the adducts confirmed the dynamic nature of this cyclization, indicating potential applications in dynamic covalent chemistry. DFT calculations revealed the mechanistic pathways for new cyclizations, suggesting a concerted [3 + 2] cycloaddition for the formation of selenadiazolium rings and a stepwise mechanism involving a ketenimine intermediate for the formation of selenazolium rings. Natural bond orbital analysis confirmed the involvement of σ-hole interactions and lone pair to σ* electron donation in these processes. Additionally, theoretical investigations of σ-hole interactions were performed, focusing on the selenium-centered contacts within the new compounds.

摘要

在此,我们描述了一种亲双性的2-吡啶基硒试剂与具有活性α-亚甲基的腈之间的新型偶联反应。根据所使用的溶剂,该反应可以高产率生成两种不同类型的阳离子吡啶并含硒杂环,即1,3-硒唑鎓盐或1,2,4-硒二唑鎓盐。这与我们之前对其他腈的观察结果形成对比。值得注意的是,硒二唑鎓盐的形成是可逆的,在溶液中会逐渐转化为热力学上更稳定的硒唑鎓产物。我们的研究结果首次揭示了CN三键与2-吡啶基硒试剂之间1,3-偶极环化反应的可逆性质。对加合物进行的腈取代实验证实了这种环化反应的动态性质,表明其在动态共价化学中的潜在应用。密度泛函理论(DFT)计算揭示了新环化反应的机理途径,表明形成硒二唑鎓环是通过协同的[3 + 2]环加成反应,而形成硒唑鎓环则涉及一个酮亚胺中间体的分步机理。自然键轨道分析证实了这些过程中σ-空穴相互作用以及孤对电子向σ*电子的捐赠。此外,还对σ-空穴相互作用进行了理论研究,重点关注新化合物中以硒为中心的接触。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eea8/11641742/0025d30ef1f2/ijms-25-12798-sch001.jpg

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