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首页> 外文期刊>Chemistry: A European journal >Synthesis of Substituted Benzenes and Phenols by Ring-Closing Olefin Metathesis
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Synthesis of Substituted Benzenes and Phenols by Ring-Closing Olefin Metathesis

机译:闭环烯烃复分解法合成取代的苯和苯酚

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New synthetic approaches to substituted aromatic compounds are reported. Ring-closing olefin metathesis (RCM)/dehydration and RCM/tautomerization Lire the key processes in the synthesis of substituted benzenes 3 and phenols 6, respectively. Readily accessible 1,5,7-trien-4-ols 7, which are the precursors of benzenes, were prepared from beta-halo-alpha,beta-unsaturated aldehydes 11 or beta-halo-alpha,beta-unsaturated esters 19 by utilizing reliable transformations in which cross-coupling with vinylic metal reagents 12 and allylation with allylic metal reagents 13 were employed as carbon-carbon bond forming reactions. RCM of 7, followed by dehydration, afforded a wide variety of substituted benzenes 3. In addition. RCM of 1,5,7-trien-4-ones 9, which were prepared by oxidation of 7, furnished various substituted phenols 6 by automatic tautomerization.
机译:报道了取代芳族化合物的新合成方法。闭环烯烃复分解(RCM)/脱水和RCM /互变异构是分别合成取代苯3和苯酚6的关键过程。易得的1,5,7-trien-4-ols 7是苯的前体,它是利用β-卤代α,β-不饱和醛11或β-卤代α,β-不饱和酯19通过利用可靠的转化方法,其中与乙烯基金属试剂12的交叉偶联和与烯丙基金属试剂13的烯丙基化被用作碳-碳键形成反应。 RCM为7,然后进行脱水,得到了各种各样的取代苯3。通过氧化7制备的1,5,7-三烯-4-酮9的RCM通过自动互变异构作用提供了各种取代的酚6。

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