首页> 外文期刊>Journal of Organometallic Chemistry >A new frontier in the metal-catalyzed cross-coupling reaction field. The palladium-promoted metal-carbon bond formation. Scope and mechanism of a new tool in organometallic synthesis
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A new frontier in the metal-catalyzed cross-coupling reaction field. The palladium-promoted metal-carbon bond formation. Scope and mechanism of a new tool in organometallic synthesis

机译:金属催化交叉偶联反应领域的一个新领域。钯促进的金属-碳键形成。有机金属合成新工具的范围和机理

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The synthetic uses and the investigation of the reaction mechanism of the Pd-catalyzed metal-carbon bond-formation process are accounted. Preparations of simple a-metal metal acetylides of type M-C=C-R (M = Fe, Ru, Mo, W; R = H, Alkyl, Ph), homo and heterobimetallic complexes of type M-CdropC-Thiop-CdropC-M' (Thiop = 2,5-thiophene; M , M' = Fe, Ru, Mo, W), polymetallaacetylidc tethers of type M-CdropC -Thiop -CdropC-M'(eta(5)-Cp)-C-=C-Thiop-CdropC-(eta(5)-Cp)M'-CdropC-Thiop-CdropC- M (M = Re, Mn; M' = Fe), and metallaacetylide polymers of type [-M-CdropC-Ar-CdropC-](n) (Ar = 2,5-thiophene, 1,4-phenylene) are reported. By the use of properly designed model substrate principal intermediates (i.e. oxidative addition, transmetalation) involved in the catalytic cycle have been isolated and fully characterized. Kinetic and spectroscopic studies of the reaction mechanism have evidenced that, depending from the reaction conditions, the transmetalation step may proceed by two pathways: (i) in concentrated solutions of the complex of oxidative addition (congruent to10(-2) M), transmetalation occurs through the formation of the intermediate species which is an associative complex between the substrate and the organostannane (associative mechanism). (ii) When transmetalation is performed using the complex of oxidative addition in lower concentrations (congruent to 10(-4) M), the reaction proceeds through formation of a highly-reactive solvent-coordinate species (dissociative mechanism). These results are showing clear analogies with mechanistic studies of the carbon-carbon coupling process, thus with the use of these model substrates, a unique opportunity to investigate factors affecting the metal-carbon bond formation reaction is offered, as well as the possibility to shed light on unclear aspects of the carbon-carbon coupling itself, a phenomenon of paramount importance in synthetic organic chemistry. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 61]
机译:介绍了钯催化金属碳键形成过程的合成用途和反应机理的研究。制备类型为MC = CR(M = Fe,Ru,Mo,W; R = H,烷基,Ph)的简单a-金属金属乙炔,M-CdropC-Thiop-CdropC-M'型的均金属和杂双金属配合物硫族= 2,5-噻吩; M,M'= Fe,Ru,Mo,W),M-CdropC型多金属乙酰乙炔系链-硫族-CdropC-M'(eta(5)-Cp)-C- = C- Thiop-CdropC-(eta(5)-Cp)M'-CdropC-Thiop-CdropC-M(M = Re,Mn; M'= Fe)和[-M-CdropC-Ar-CdropC-据报道](n)(Ar = 2,5-噻吩,1,4-亚苯基)。通过使用适当设计的模型底物,催化循环中涉及的主要中间体(即氧化加成,重金属化)已被分离出来并得到充分表征。反应机理的动力学和光谱学研究表明,根据反应条件,重金属化步骤可能通过两种途径进行:(i)在氧化加成配合物(相当于10(-2)M)的浓溶液中,重金属化通过形成中间物质而发生,该中间物质是底物和有机锡烷之间的缔合复合物(缔合机理)。 (ii)当使用较低浓度(相当于10(-4)M)的氧化加成配合物进行金属转移时,反应通过形成高反应性的溶剂配位物质而发生(离解机理)。这些结果显示出与碳-碳偶联过程机理研究的明确相似之处,因此,使用这些模型基材,可以提供独特的机会来研究影响金属-碳键形成反应的因素以及脱落的可能性揭示了碳-碳耦合本身不清楚的方面,这在合成有机化学中至关重要。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:61]

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