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Heavier Alkaline Earth Catalysts for the Intermolecular Hydroamination of Vinylarenes, Dienes, and Alkynes

机译:乙烯基芳烃,二烯和炔烃的分子间加氢胺化的较重的碱土催化剂

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摘要

The heavier group 2 complexes [M{N(SiMe_3)_2}_2]_2 (1, M = Ca; 2, M = Sr) and [M{CH(SiMe_3)_2}_2(THF)_2] (3, M = Ca; 4, M = Sr) are shown to be effective precatalysts for the intermolecular hydroamination of vinyl arenes and dienes under mild conditions. Initial studies revealed that the amide precatalysts, 1 and 2, while compromised in terms of absolute activity by a tendency toward transaminative behavior, offer greater stability toward polymerization/oligomerization side reactions. In every case the strontium species, 2 and 4, were found to outperform their calcium congeners. Reactions of piperidine with para-substituted styrenes are indicative of rate-determining alkene insertion in the catalytic cycle while the ease of addition of secondary cyclic amines was found to be dependent on ring size and reasoned to be a consequence of varying amine nucleophilicity. Hydroamination of conjugated dienes yielded isomeric products via η~3-allyl intermediates and their relative distributions were explained through stereoelectronic considerations. The ability to carry out the hydroamination of internal alkynes was found to be dramatically dependent upon the identity of the alkyne substituents while reactions employing terminal alkynes resulted in the precipitation of insoluble and unreactive group 2 acetylides. The rate law for styrene hydroamination with piperidine catalyzed by [Sr{N(SiMe_3)_2}_2]_2 was deduced to be first order in [amine] and [alkene] and second order in [catalyst], while large kinetic isotope effects and group 2 element-dependent △S values implicated the formation of an amine-assisted rate-determining alkene insertion transition state in which there is a considerable entropic advantage associated with use of the larger strontium center.
机译:第2组较重的配合物[M {N(SiMe_3)_2} _2] _2(1,M = Ca; 2,M = Sr)和[M {CH(SiMe_3)_2} _2(THF)_2](3,M = Ca; 4,M = Sr)被证明是在温和条件下乙烯基芳烃和二烯烃的分子间加氢胺化的有效预催化剂。初步研究表明,酰胺预催化剂1和2虽然在绝对活性方面受到转氨行为的影响,但对聚合/低聚副反应的稳定性更高。在每种情况下,发现锶种类2和4都优于其钙同类物。哌啶与对位取代的苯乙烯的反应表明在催化循环中决定烯烃插入的速率,而发现仲环胺的添加容易程度取决于环的大小,并被认为是胺亲核性变化的结果。共轭二烯的氢化胺化反应通过η〜3-烯丙基中间体产生异构体产物,并通过立体电子学方法解释了它们的相对分布。发现进行内部炔烃的氢化胺化的能力极大地取决于炔烃取代基的身份,而采用末端炔烃的反应导致不溶性和不反应性的2族乙炔的沉淀。推导[Sr {N(SiMe_3)_2} _2] _2] _2催化的哌啶苯乙烯加氢胺化反应的速率规律在[胺]和[烯烃]中为一阶,在[催化剂]中为二阶,而较大的动力学同位素效应和第2组元素相关的△S值暗示了胺辅助速率决定的烯烃插入过渡态的形成,其中较大的锶中心的使用具有相当大的熵优势。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第4期|p.2193-2207|共15页
  • 作者单位

    Department of Chemistry, Imperial College London, Exhibition Road, South Kensington, London SW7 2AZ, U.K.;

    Department of Chemistry, Imperial College London, Exhibition Road, South Kensington, London SW7 2AZ, U.K.;

    Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, U.K;

    GIaxoSmithKIine Medicines Research Center, Gunnels Wood Road, Stevenage, Hertfordshire SGI 2NY, U.K;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:13:22

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