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C-H Bond Functionalization via Hydride Transfer: Formation of α-Arylated Piperidines and 1234-Tetrahydroisoquinolines via Stereoselective Intramolecular Amination of Benzylic C-H Bonds

机译:通过氢化物转移C-H键官能:通过苄型C-H键的立体选择性分子内胺化α芳基化哌啶和1234-四氢异喹啉的形成

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摘要

We here report a study of the intramolecular amination of sp3 C-H bonds via the hydride transfer cyclization of N-tosylimines (HT-amination). In this transformation, 5-aryl-aldehydes are subjected to N-toluenesulfonamide in the presence of BF3•OEt2 to effect imine formation and HT-cyclization, leading to 2-aryl-piperidines and 3-aryl-1,2,3,4-tetrahydroisoquinolines in a one-pot procedure. We examined the reactivity of a range of aldehyde substrates as a function of their conformational flexibility. Substrates of higher conformational rigidity were more reactive, giving higher yields of the desired products. However, a single substituent on the alkyl chain linking the N-tosylimine and the benzylic sp3 C-H bonds was sufficient for HT-cyclization to occur. In addition, an examination of various arenes revealed that the electronic character of the hydridic C-H bonds dramatically affects the efficiency of the reaction. We also found that this transformation is highly stereoselective; 2-substituted aldehydes yield cis-2,5-disubstituted piperidines, while 3-substituted aldehydes afford trans-2,4-disubstituted piperidines. The stereoselectivity is a consequence of thermodynamic control. The pseudo-allylic strain between the arene and tosyl group on the piperidine ring is proposed to rationalize the greater stability of the isomer with the aryl ring in the axial position. This preferential placement of the arene is proposed to affect the observed stereoselectivity.
机译:我们在此报告了通过N-三氧化胺(HT-胺化)的氢化物转移环化进行SP 3-SUP> C-H键的分子内胺化的研究。在该转化中,在BF3•OET2的存在下,将5-芳基 - 醛进行正甲苯胺,以实现亚胺形成和HT环化,导致2-芳基 - 哌啶和3-芳基-1,2,3,4 - 一锅手术中的 - 四羟基异喹啉。我们检查了一系列醛底物的反应性,作为其构象灵活性。较高的构象刚性的基板更加反应,得到更高的所需产物的产率。然而,连接N-甲基胺和苄基SP 3 C-H键的烷基链上的单个取代基足以发生HT环化。此外,各种植物的检查表明,氢化物C-H键的电子特性显着影响反应的效率。我们还发现,这种转变是高度立体化的; 2-取代的醛收产生顺式-2,5-二取代的哌啶,而3取代的醛提供反式-2,4-二取代的哌啶。立体选择性是热力学控制的结果。提出了哌啶环上的芳烃和甲硅烷基之间的伪烯丙基菌株,以合理化在轴向位置的芳族环中的异构体的更大稳定性。提出了芳烃的这种优先放置,以影响观察到的立体选择性。

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