首页> 外文期刊>The Journal of Organic Chemistry >Microwave-assisted syntheses of n-heterocycles using alkenone-, alkynone- and aryl-carbonyl O-phenyl oximes: Formal synthesis of neocryptolepine
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Microwave-assisted syntheses of n-heterocycles using alkenone-, alkynone- and aryl-carbonyl O-phenyl oximes: Formal synthesis of neocryptolepine

机译:使用烯酮,炔炔基和芳基羰基O-苯基肟的微波辅助合成n-杂环:新隐油菜的正式合成

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This research aimed to provide a new and "clean" synthetic method that would enable both known and novel N-heterocycles to be prepared efficiently. O-Phenyl oximes were found to be excellent precursors for iminyl radicals with a variety of acceptor side chains. Dihyropyrroles were made in good yields from O-phenyl oximes containing pent-4-ene acceptors. The analogous process with a hex-5-enyl acceptor did not yield a dihydropyridine, probably because the 6-exo-trig ring closure of the iminyl radical was too slow,to compete with H-atom abstraction. The iminyl radical from a precursor with a pent-4-yne type side chain underwent ring closure followed by rearrangement to afford a pyrrole derivative. Suitably substituted iminyl radicals ring closed readily onto aromatic acceptors, thus enabling several polycyclic systems to be accessed. Quinolines were made from 3-phenylpropanones via their O-phenyl oximes. Syntheses of phenanthridines starting from 2-formylbiphenyls were particularly efficient, and this approach enabled the natural product trisphaeridine to be made. Starting from 2-phenylnicotinaldehyde derivatives, ring closures of the derived iminyl radicals onto the phenyl rings yielded benzo[h][1,6]naphthyridines. Similarly, ring closure onto a phenyl ring from a benzothiophene-based iminyl yielded a benzo[b]thieno[2,3-c]quinoline. By way of contrast, iminyl radical ring closure onto pyridine rings was not observed. However, iminyl radicals did cyclize onto indoles, enabling indolopyridines to be prepared. The latter route was exploited in a short formal synthesis of neocryptolepine starting from 2-((1H-indol-3-yl)methyl)cyclohexanone.
机译:这项研究旨在提供一种新的“清洁”的合成方法,该方法将能够有效地制备已知和新颖的N-杂环。发现O-苯基肟是具有各种受体侧链的亚氨基自由基的优异前体。由含有戊-4-烯受体的O-苯基肟以高收率制得二羟基吡咯。与六-5-烯基受体类似的过程没有产生二氢吡啶,这可能是因为亚胺基的6-exo-trig闭环太慢而无法与H-原子抽象竞争。来自具有戊-4-炔型侧链的前体的亚胺基进行闭环,然后重排以提供吡咯衍生物。合适地取代的亚氨基自由基容易地闭环在芳族受体上,因此使得能够使用多个多环系统。喹啉由3-苯基丙烷经其O-苯基肟制得。由2-甲酰基联苯开始的菲啶的合成特别有效,这种方法可以制备天然产物三菲啶。从2-苯基烟碱醛衍生物开始,将衍生的亚胺基自由基闭环到苯环上,得到苯并[h] [1,6]萘啶。类似地,将苯并噻吩基亚胺基的苯环闭环,得到苯并[b]噻吩并[2,3-c]喹啉。相比之下,未观察到亚吡啶基自由基闭环到吡啶环上。然而,亚氨基自由基确实会环化到吲哚上,从而能够制备吲哚吡啶。从2-(((1H-吲哚-3-基)甲基)环己酮开始,新隐油菜碱的短形式合成中利用了后一种途径。

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