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Synthesis of benzo-fused heterocycles using isometerization and ring-closing metathesis reactions

机译:使用等距和闭环易位反应合成苯并稠合杂环

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摘要

The first part of the dissertation involves the use of ruthenium mediated isomerization (RMI) followed by ring-closing metathesis (RCM) on a selection of phenols and naphthol-1-ol precursors – that had been subjected to allylation; followed by a heat initiated Claisen rearrangement; followed by re-allylation – to form a selection of benzofurans. This procedure, to the best of our knowledge, represents a novel method for the synthesis of benzofurans, with very good average yields of around 90% overall for the RMI/RCM and allylation steps. The lowest yield of the five synthetic steps, were for the Claisen rearrangements with a range of yields between 50% and 86%, indicating the potential to optimise the yields of these reactions, which were carried out using both conventional and microwave heating. The following five-membered oxygen-containing heterocycles were thus obtained: 4,7-dimethoxybenzofuran, 5-bromobenzofuran, 5-tert-butyl-benzofuran, 7-phenyl-1-benzofuran and naphtho[1,2-b]furan.udThe second part of the dissertation involves the use of RMI and RCM on di-allylated; di-allylated di-isomerised; and di-allylated mono-isomerized O,N- (aminophenol) and N,N- (benzene-1,2-diamine) protected precursors. This resulted in the formation of six-, seven- and eight-membered benzo-fused heterocycles respectively. Except in the case of the mono- and di-isomerised N,N-precursor, which failed to undergo RCM, despite several attempts. This failure, which is not unprecedented, is most likely due to the interaction of nitrogen‟s lone pairs and the adjacent saturated bonds of the precursor with the GII catalyst, resulting in de-allylation. Of those reactions that were successful, the average yields for the RMI/RCM steps were in the region of 82% for the N,N-precursors and 95% for the O,N-precursors. All precursors readily submitted to allylation and isomerization, with an average yield of 94%. The following benzo-fused heterocycles were thus obtained: six-membered: 4H-1,4-benzoxazin-4-yl(phenyl) methanone; seven-membered: 1,5-benzoxazepin-5(4H)-yl(phenyl)methanone; eight-membered: 2,5-dihydro-6H-1,6-benzoxazocin-6-yl(phenyl) methanone and 1,1'-[(3Z)-2,5-dihydro-1,6-benzodiazocine-1,6-diyl]diethanone.
机译:论文的第一部分涉及使用钌介导的异构化(RMI),然后对已进行烯丙基化的酚和萘酚-1-醇前体的选择进行闭环复分解(RCM)。随后由热引发的克莱森重排;然后再烯丙基化–形成一系列苯并呋喃。据我们所知,该方法代表了一种合成苯并呋喃的新方法,RMI / RCM和烯丙基化步骤的平均平均收率非常好,约为90%。这五个合成步骤的最低收率是克莱森重排,收率范围在50%至86%之间,这表明有可能优化这些反应的收率,这是使用常规加热和微波加热进行的。由此获得以下五元含氧杂环:4,7-二甲氧基苯并呋喃,5-溴苯并呋喃,5-叔丁基-苯并呋喃,7-苯基-1-苯并呋喃和萘并[1,2-b]呋喃。 ud论文的第二部分涉及在二烯丙基化时使用RMI和RCM;二烯丙基化二异构化;二烯丙基化的单异构化O,N-(氨基苯酚)和N,N-(苯1,2-二胺)保护的前体。这导致分别形成六元,七元和八元苯并稠合的杂环。除了单异构和双异构的N,N前体外,尽管经过多次尝试,但均未进行RCM。这种失败并非前所未有,最有可能是由于氮的孤对与前驱体的相邻饱和键与GII催化剂的相互作用,导致脱芳基化。在成功的那些反应中,RMI / RCM步骤的平均产率在N,N前体为82%左右,在O,N前体为95%左右。所有前体均易于进行烯丙基化和异构化,平均收率为94%。由此获得以下苯并稠合的杂环:六元:4H-1,4-苯并恶嗪-4-基(苯基)甲酮;七元:1,5-苯并恶嗪-5(4H)-基(苯基)甲酮;八元:2,5-二氢-6H-1,6-苯并恶唑啉-6-基(苯基)甲酮和1,1'-[(3Z)-2,5-二氢-1,6-苯并重氮-1, 6-二基]二酮。

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    Madeley Lee Gavin;

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  • 年度 2011
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