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首页> 外文期刊>The Journal of Organic Chemistry >Bu4NI-Catalyzed, Radical-Induced Regioselective N-Alkylations and Arylations of Tetrazoles Using Organic Peroxides/Peresters
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Bu4NI-Catalyzed, Radical-Induced Regioselective N-Alkylations and Arylations of Tetrazoles Using Organic Peroxides/Peresters

机译:Bu4Ni催化,自由基诱导的区域选择性N-烷基和使用有机过氧化物/恶作剧的四唑的芳族

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摘要

Bu4NI-catalyzed regioselective N-2-methylation, N-2-alkylation, and N-2-arylation of tetrazoles have been achieved using tert-butyl hydroperoxide (TBHP) as the methyl source, alkyl diacyl peroxides as the primary alkyl source, alkyl peresters as the secondary and tertiary alkyl sources, and aryl diacyl peroxides as the arylating source. These reactions proceed without pre-functionalization of tetrazole and in the absence of any metal catalysts. Here, peroxides serve the dual role of oxidants as well as alkylating or arylating agents. Based on DFT calculations, it was found that spin density, transition-state barriers (kinetic control), and thermodynamic stability of the products (thermodynamic control) play essential roles in the observed regioselectivity during N-alkylation. This radical-mediated process is amenable to a broad range of substrates and provides products in moderate to good yields.
机译:使用叔丁基氢过氧化物(TBHP)作为甲基源,作为伯烷基源,烷基二烷基源,烷基,使用叔丁基氢过氧化氢(TBHP),以作为伯烷基源,烷基的烷基二酰基二烷基源,烷基烷基二烷基源,烷基 作为仲和叔烷基光源的腐蚀,和作为芳晶源的芳基二酰二酰基过氧化物。 这些反应在没有四唑的前官能化的情况下进行,并且在没有任何金属催化剂的情况下。 这里,过氧化物用于氧化剂的双重作用以及烷基化或芳晶试剂。 基于DFT计算,发现旋转密度,过渡态屏障(动力控制)和产品的热力学稳定性(热力学控制)在N-烷基化期间在观察到的区域选择性中起主要作用。 该激进的介导的方法可均可用于广泛的基材,并以中等至良好的产率提供产物。

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