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Tandem Hydroaminomethylation Reaction to Synthesize Amines from Alkenes

机译:串联的氢氨基甲基化反应,以合成烯烃的胺

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摘要

In the context of atom economy and low environmental impact, synthesis of amines by an efficient catalytic process is of great importance to produce these building blocks for fine chemical industry. The one-pot hydroaminomethylation of alkenes is a tandem reaction which involves three successive steps under CO/H_(2) pressure to perform the catalyzed hydroformylation of the alkene into the corresponding aldehyde followed by its condensation with a N–H function and the catalyzed hydrogenation of the imine/enamine intermediate into the corresponding saturated amine. Rhodium and more recently ruthenium complexes have been designed to combine high conversions of the reactants and chemoselectivity in the expected amines with high regioselectivity in either the linear or the branched amine. The coordination sphere of the metal according to the presence of ligands, temperature, CO/H_(2) partial pressures, and nature of the solvent is essential for complying with these selectivity requirements. The rate of the hydroformylation step needs to be fast with regard to the hydrogenation step. The role of amines in the coordination sphere and water, presumably in the second sphere, on the mechanism requires some more studies. Similarly, the enantioselective synthesis of amine is not yet achieved directly and interrupted processes or use of asymmetric organo-catalyzed reductive amination are efficient synthetic ways for producing chiral amines. The separation of the catalyst from the organic products by biphasic or (semi-) heterogeneized systems and its recycling have been demonstrated in many cases. The present review provides a report of the state of the art in this autotandem hydroaminomethylation catalysis and should open prospects in the design of less expensive and abundant metal complexes for reaching at low cost similar and even superior performances.
机译:在原子经济的背景下,通过有效的催化过程合成胺的合成是生产用于精细化工工业的这些建筑块的重要性。烯烃的一锅羟肟甲基化是串联反应,其涉及在CO / H_(2)的压力下的三个连续步骤,以将烯烃的催化加氢甲酰化在相应的醛中,然后用N-H函数和催化的氢化进行缩合。亚胺/烯胺中间体进入相应的饱和胺。铑和更多最近的钌配合物设计用于将反应物和化学选择性的高转化相结合,在预期的胺中具有高区域选择性的胺,在线性或支链胺中。根据配体的存在,温度,CO / H_(2)部分压力的配位球体,溶剂的性质对于遵守这些选择性要求是必不可少的。加氢甲酰化步骤的速率需要在氢化步骤方面快速。胺在协调球体和水中的作用,可能在第二个球体中,对机制需要更多的研究。类似地,尚未直接实现氨基的映选择性合成,并且中断过程或使用不对称有机催化的还原胺化是生产手性胺的有效合成方式。在许多情况下,已经证明了在许多情况下通过双相或(半)的非核实系统与有机产物分离与有机产物的分离。本综述提供了本次自动群羟氨基甲基化催化剂中最新技术的报告,并应开放设计较便宜和丰富的金属配合物的设计,以达到低成本,类似甚至优越的性能。

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  • 来源
    《Chemical Reviews》 |2018年第7期|共29页
  • 作者单位

    Laboratoire de Chimie de Coordination du CNRS UPR 8241 Composante ENSIACET de l’Institut National Polytechnique de Toulouse University of Toulouse UPS-INP 4 allée Emile Monso 31030 Toulouse Cedex 4 France;

    Laboratoire de Chimie de Coordination du CNRS UPR 8241 Composante ENSIACET de l’Institut National Polytechnique de Toulouse University of Toulouse UPS-INP 4 allée Emile Monso 31030 Toulouse Cedex 4 France;

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  • 正文语种 eng
  • 中图分类 化学;
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