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首页> 外文期刊>Chemical science >Catalytic 1,2-dihydronaphthalene and E-aryl-diene synthesis via CoIII–Carbene radical and o-quinodimethane intermediates
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Catalytic 1,2-dihydronaphthalene and E-aryl-diene synthesis via CoIII–Carbene radical and o-quinodimethane intermediates

机译:通过 Co III -碳原子团和 o -催化合成1,2-二氢萘和 E -芳基-二烯喹二甲烷中间体

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Catalytic synthesis of substituted 1,2-dihydronaphthalenes via metalloradical activation of o-styryl N-tosyl hydrazones ((E)-2-(prop-1-en-1-yl)benzene-N-tosyl hydrazones) is presented, taking advantage of the intrinsic reactivity of a cobalt(III)–carbene radical intermediate. The method has been successfully applied to a broad range of substrates with various R1 substituents at the aromatic ring, producing the desired ring products in good to excellent isolated yields for substrates with an R2 = COOEt substituent at the vinylic position (~70–90%). Changing the R2 moiety from an ester to other substituents has a surprisingly large influence on the (isolated) yields. This behaviour is unexpected for a radical rebound ring-closure mechanism, and points to a mechanism proceeding via ortho-quinodimethane (o-QDM) intermediates. Furthermore, substrates with an alkyl substituent on the allylic position reacted to form E-aryl-dienes in excellent yields, rather than the expected 1,2-dihydronaphthalenes. This result, combined with the outcome of supporting DFT calculations, strongly points to the release of reactive o-QDM intermediates from the metal centre in all cases, which either undergo a 6π-cyclisation step to form the 1,2-dihydronaphthalenes, or a [1,7]-hydride shift to produce the E-aryl-dienes. Trapping experiments using TEMPO confirm the involvement of cobalt(III)–carbene radical intermediates. EPR spectroscopic spin-trapping experiments using phenyl N-tert-butylnitrone (PBN) confirm the radical nature of the catalytic reaction.
机译:通过 o -苯乙烯基 N -甲苯磺酰(( E )的金属链活化催化合成取代的1,2-二氢萘利用钴( III 的内在反应性,提出了>)-2-(prop-1-en-1-yl)苯- N -甲苯磺酰>)–卡宾自由基中间体。该方法已成功应用于在芳香环上具有各种 R 1 取代基的多种底物上,可生产出良好的所需环产物在乙烯基位置(〜70–90%)具有 R 2 = COOEt取代基的底物具有优异的分离产率。将 R 2 部分从酯更改为其他取代基会对(分离的)产率产生令人惊讶的巨大影响。对于彻底的反弹闭环机理而言,这种行为是出乎意料的,它表明通过邻位-喹二甲烷( o -QDM)中间体进行过程的机理。此外,在烯丙基位置具有烷基取代基的底物以优异的产率反应形成了 E -芳基-二烯,而不是预期的1,2-二氢萘。该结果与支持DFT计算的结果相结合,强烈表明在所有情况下金属中心都释放出反应性 o -QDM中间体,这些中间体经过6π环化步骤形成1 ,2-二氢萘或[1,7]氢化物转变生成 E -芳基二烯。使用TEMPO进行的诱捕实验证实了钴( III )-碳烯自由基中间体的参与。 EPR光谱自旋捕集实验使用苯基 N-叔-丁基硝基(PBN)证实了催化反应的自由基性质。

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