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首页> 外文期刊>The Journal of Organic Chemistry >SEQUENCE OF REACTANT COMBINATION ALTERS THE COURSE OF THE STAUDINGER REACTION OF AZIDES WITH ACYL DERIVATIVES - BIMANES .30.
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SEQUENCE OF REACTANT COMBINATION ALTERS THE COURSE OF THE STAUDINGER REACTION OF AZIDES WITH ACYL DERIVATIVES - BIMANES .30.

机译:反应混合物的顺序改变了叠氮化物与酰基衍生基-二烯的斯特劳特反应的过程.30。

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The Staudinger reaction of azides has now been followed by NMR and other spectroscopic techniques. syn-(Azidomethyl,methyl)(methyl,methyl)bimane (1) and Ph(3)P form a triazaphosphadiene intermediate 2 and then the bimane P-triphenyliminophosphorane 3. The iminophosphorane reacts with an acyl chloride to yield an iminophosphonium salt 4 which then forms the oxazaphosphetane 13. The latter undergoes an electrocyclic reversion to form the phosphine oxide and the chloroimines 7E and 7Z, the last being hydrolyzed to the (acylamido)bimane 6. This set of reactions constitutes the ''iminophosphorane pathway''. A significant diversion of the reaction path to an (N-alkylamino)phosphonium chloride 8 occurs through reaction of 4 with H2O present in the CDCl3 and through reaction of 3 with HCl. A different azide (alpha-azido-o-xylene Ib) produces the (acylamido)-o-xylene as the sole product. A less sterically hindered phosphine (tri-2-furylphosphine) reacts more slowly to form the iminophosphorane 3a from the azidobimane 1. Reaction of the bimane P-tri-2-furyliminophosphorane with acyl chloride gives only the (acylamido)bimane 6. If the acyl chloride is mixed with 1, followed by addition of the Ph(3)P, the triazaphosphadiene adduct 5 is formed via the triazaphosphadiene. The adduct 5 is converted rapidly into a six-membered cyclic compound 11. The latter either loses nitrogen to yield 6 via 72 and 7E and the phosphine oxide or loses chloride 10 through a novel chloride-induced elimination reaction from its protonated form. The change in procedure thus results in a dramatic change in the reaction pathway, a reaction set that constitutes the ''triazaphosphadiene adduct pathway''. In the case of alpha-azido-o-xylene, alpha-chloro-xylene (10b) is the only product. The reactions of the azides 1 or Ib with tri-2-furylphosphine also produce chlorides as the major products accompanied by some acetamido derivatives. The nucleophile-induced reaction explains a ''surprising result'' (formation of ester rather than amide) reported by Sahlberg et al. (Sahlberg, C.; Jackson, A. M.; Claesson, A. Acta Chem. Scand. 1888, B42, 556-562). The intramolecular ''aza-Wittig'' reaction may depend on the nucleophilicity of the triazaphosphadiene. A comprehensive mechanistic scheme for the Staudinger reaction of azides is conveniently divided into the following: (A) formation of the triazaphosphadiene (Scheme 1), (B) reactions of the triazaphosphadiene (Scheme 2), and (C) reactions via the iminophosphorane (Scheme 3). Some approximate kinetic parameters are reported for some of the reactions. [References: 70]
机译:叠氮化物的施陶丁格反应现在已经通过NMR和其他光谱技术进行了跟踪。 syn-(叠氮基甲基,甲基)(甲基,甲基)二manemane(1)和Ph(3)P形成三氮杂磷二烯中间体2,然后形成bimane P-三苯基亚氨基正膦3.亚氨基正膦与酰氯反应生成亚氨基phosph盐4然后形成氧杂磷杂环丁烷13。后者进行电环转化以形成氧化膦和氯亚胺7E和7Z,最后一个水解为(酰基酰胺基)二manemane6。这组反应构成了“亚氨基磷烷途径”。通过4与CDCl 3中存在的H 2 O的反应以及通过3与HCl的反应,将反应路径显着转移至(N-烷基氨基)phosph氯化物8。不同的叠氮化物(α-叠氮基-邻二甲苯基Ib)产生(酰基酰胺基)-邻二甲苯作为唯一产物。位阻较少的膦(三-2-呋喃基膦)反应较慢,由叠氮基双氮烷1形成亚氨基膦3a。双芳基P-三-2-呋喃基亚氨基膦与酰氯的反应仅生成(酰基酰胺基)双氮杂6。将酰氯与1混合,然后添加Ph(3)P,通过三氮杂磷二烯形成三氮杂磷二烯加合物5。加合物5迅速转变成六元环状化合物11。后者要么失去氮,经72和7E生成6和氧化膦,要么通过新型的氯化物诱导的从其质子化形式的消除反应而失去氯化物10。程序的改变因此导致反应途径的急剧变化,该反应过程构成了“三氮杂磷二烯加合物途径”。就α-叠氮基邻二甲苯而言,α-氯二甲苯(10b)是唯一产品。叠氮化物1或1b与三-2-呋喃基膦的反应也产生氯化物作为主要产物,并伴有一些乙酰氨基衍生物。亲核试剂诱导的反应解释了Sahlberg等人报道的“令人惊讶的结果”(酯的形成而不是酰胺的形成)。 (Sahlberg,C。; Jackson,A.M。; Claesson,A.Acta Chem.Scand.1888,B42,556-562)。分子内的“氮杂-维蒂希”反应可能取决于三氮杂磷二烯的亲核性。叠氮化物的史陶丁格反应的综合机制方案可方便地分为以下几类:(A)三氮杂磷二烯的形成(方案1),(B)三氮杂磷二烯的反应(方案2)和(C)通过亚氨基正膦的反应(方案3)。对于某些反应,报道了一些近似的动力学参数。 [参考:70]

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