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Chemistry of 2,4,6-Tri-tert-butylanilides Possessing Isolable Rotational Isomer

机译:具有可分离的旋转异构体的2,4,6-三叔丁基丙酯的化学物质

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Amide C-N bond in 2,6-di-tert-butylanilides has a high rotational barrier and the individual amide rotational isomers can be isolated at ambient temperature. These anilides have been reported by Chupp et al. in 1967, but no systematic study with anilide substrates other than alpha-haloacetoanilides, or the stereoselective synthesis of anilide rotamers have been reported. In addition, the structural properties of these anilides have not been investigated in detail. We succeeded in the highly selective stereodivergent synthesis of Z- and E-rotamers of various N-ally1-2,4,6-tri-tert-butylanilides through Pd (O) and Pd (II) catalyzed N-allylation of O-allyl-N(2,4,6-tri-tert-butylphenyl)imidates. Moreover, the relative thermodynamic stabilities of the obtained anilide rotamers were clarified. Specific reactivity of 2,4,6-tri-tert-butylanilide derivatives was also found. For examples, in intramolecular Diels-Alder reaction of N-ally 2-furoyl amides, 2,4,6-tri-tert-butylphenyl group on the nitrogen atom remarkably accelerated the reaction. Although the reaction of ordinal anilide anion with alkyl halide gives N-alkylation product, the alkylation with 2,4,6-tri-tert-butylanilide anion preferentially proceeded on the oxygen atom to give O-alkyl imidate. O-Benzyl imidate, which was obtained by the reaction with benzyl bromide, was used as bezylation reagent of alcohols and carboxylic acids. In contrast to rotational rigidity of 2,4,6-tri-tert-butylanilide, in the anilide enolates, interconversion between the rotamers readily occurs at ambient temperature, and their reaction with electrophiles gave rotamer mixtures of the products in a ratio that depends on the reactivity of the electrophiles. Furthermore, as an application of this isomerization reaction, switching between the anilide rotamers was achieved.
机译:在2,6-二叔丁基苯胺中的酰胺C-N键具有高旋转屏障,并且可以在环境温度下分离单个酰胺旋转异构体。 Chupp等人报道了这些氧化物。报道了1967年,据报道,除了α-卤代丙酮酰基苯乙酰基之外的氧化硼底物,或者已经没有进行系统研究,或者已经报道了苯甲酰乙酰基硅化酰基的立体选择性合成。此外,尚未详细研究了这些氧化物的结构性质。通过Pd(O)和Pd(II)通过Pd(O)和Pd(II)催化O-烯丙基的Pd(O)和Pd(II),我们成功地成功地进行了高度选择性的立体式的Z-和E-rotamers的Z-和E-旋转蛋白的合成-N(2,4,6-三叔丁基苯基)酰亚胺化。此外,阐明了所得含氧化锂旋转络合物的相对热力学稳定性。还发现了2,4,6-三叔丁基偶偶胺衍生物的特异性反应性。例如,在N-Ally 2-呋喃酰胺的分子内二氧化物反应中,氮原子上的2,4,6-三叔丁基苯基显着加速了反应。虽然序氧化物阴离子与烷基卤化物的反应得到N-烷基化产物,但是优先在氧原子上进行2,4,6-三叔丁基苯胺阴离子的烷基化,得到O-烷基酰亚胺。通过与苄基溴反应获得的O-苄基酰亚胺,用作醇和羧酸的苯乙烯化试剂。与2,4,6-三叔丁基偶偶硅氧烷的旋转刚度相反,在苯氧化物烯醇化物中,旋转蛋白之间的互连容易在环境温度下发生,并且它们与电子手机的反应以取决于依赖的比例给予产物的转子混合物电泳的反应性。此外,作为这种异构化反应的施加,实现了耐氧化物旋转络合物之间的切换。

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