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组 2 促进了 NMe2H.BH3 的氢释放:中间体和催化。

Group 2 promoted hydrogen release from NMe2H.BH3: intermediates and catalysis.

机构信息

Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY UK.

出版信息

Chemistry. 2010 Jul 26;16(28):8508-15. doi: 10.1002/chem.201000127.

Abstract

Both homo- and heteroleptic alkyl and amide complexes of the Group 2 elements Mg and Ca are shown to be active for the catalytic dehydrocoupling of Me(2)NH.BH(3). Reactions of either magnesium dialkyls or the beta-diketiminate complex [HC{(Me)CN(Dipp)}(2)MgnBu] with four or two equivalents of Me(2)NHBH(3), respectively, produce compounds containing the H(3)BNMe(2)BH(2)Me(2)N ion, which coordinates to the magnesium centers through Mg-N and Mg...HB interactions in both the solution and solid states. Thermolysis of these compounds at 60 degrees C produces the cyclic product [(H(2)BNMe(2))(2)] and, it is proposed, magnesium hydrido species by an unprecedented delta-hydride elimination process. Calcium-based species, although less reactive than their magnesium-based counterparts, are found to engage in similar dehydrocoupling reactivity and to produce a similar distribution of products under thermally promoted catalytic conditions. A mechanism for these observations is presented that involves initial production and insertion of H(2)B=NMe(2) into polarized M-N bonds as the major B-N bond-forming step. The efficacy of this insertion and subsequent beta- or delta-hydride elimination steps is proposed to be dependent upon the charge density and polarizing capability of the participating Group 2 center, providing a rationale for the observed differences in reactivity between magnesium and calcium.

摘要

均相和异相的烷基和酰胺配合物的 2 族元素镁和钙被证明对 Me(2)NH.BH(3)的催化脱氢偶联是活性的。镁二烷基或β-二酮腙配合物[HC{(Me)CN(Dipp)}(2)MgnBu]与四或两当量的 Me(2)NHBH(3)反应,分别生成含有H(3)BNMe(2)BH(2)Me(2)N离子的化合物,该离子通过 Mg-N 和 Mg...HB 相互作用在溶液和固态中与镁中心配位。这些化合物在 60°C 下热解产生环状产物[(H(2)BNMe(2))(2)],并提出通过前所未有的δ-氢消除过程产生镁氢化物物种。钙基物种虽然比其镁基对应物的反应性低,但被发现具有相似的脱氢偶联反应性,并在热促进的催化条件下产生相似的产物分布。提出了一种用于这些观察结果的机制,该机制涉及 H(2)B=NMe(2)的初始产生和插入到极化的 M-N 键中,作为主要的 B-N 键形成步骤。这种插入和随后的β-或δ-氢消除步骤的功效被提议取决于参与的 2 族中心的电荷密度和极化能力,为观察到的镁和钙之间的反应性差异提供了理论依据。

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