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首页> 外文期刊>Journal of Organometallic Chemistry >Ruthenium(II) carbonyl complexes designed with arsine and PNO/PNS ligands as catalysts for N-alkylation of amines via hydrogen autotransfer process
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Ruthenium(II) carbonyl complexes designed with arsine and PNO/PNS ligands as catalysts for N-alkylation of amines via hydrogen autotransfer process

机译:用a和PNO / PNS配体设计的羰基钌(II)配合物作为通过氢自动转移过程进行胺N-烷基化的催化剂

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A series of phosphine-functionalized hydrazone/thiosemicarbazone ligands and their corresponding ruthenium(II) carbonyl complexes of the type [RuCl(CO)(AsPh3)(L)] (1-5) [L - 2-(2-(diphenylphosphino) benzylidene) benzoic acid hydrazone (PNO-BHy), 2-(2-(diphenylphosphino) benzylidene) nicotinic acid hydrazone (PNO-NHy), 2-(2-(diphenylphosphino) benzylidene)-2-furoic hydrazone (PNO-FHy), 2-(2-(diphenylphosphino)benzylidene)-4-ethyl-3-thiosemicarbazone (PNS-EtTs), 2-(2-(diphenylphosphino) benzylidene)-4-cyclohexyl-3-thiosemicarbazone (PNS-CyTs)] have been synthesized based on the ligands with different electronic and steric effects. These complexes were characterized by elemental analyses and various spectral methods. The solid-state structure of the complex 4 was determined by single-crystal X-ray diffraction method. In all of the complexes, the ligand was bound to the Ru(II) center via the PNO/PNS donor atoms. All the ruthenium(II) complexes were demonstrated as highly efficient catalysts for the synthesis of secondary amines/amides by the coupling of primary amines/amides with alcohols at low catalyst loading, and the maximum yield was obtained up to 98%. The N-alkylation reaction can be readily carried out under moderate conditions, and release of water is the sole byproduct. In addition, the effects of substituents on the ligand, solvents, base and catalyst loading on the catalytic activity of the complexes have been investigated. Advantageously, only one equivalent of the alcohol was consumed in the process. (C) 2015 Elsevier B.V. All rights reserved.
机译:[RuCl(CO)(AsPh3)(L)](1-5)类型的一系列膦官能化(/硫代半碳鎓配体及其相应的钌(II)羰基配合物[1-5-[2-(2-(二苯基膦基)]亚苄基)苯甲酸(PNO-BHy),2-(2-(二苯基膦基)亚苄基)烟酸(PNO-NHy),2-(2-(二苯基膦基)亚苄基)-2-呋喃hydr(PNO-FHy) ,2-(2-(二苯基膦基)亚苄基)-4-乙基-3-硫代半脲(PNS-EtTs),2-(2-(二苯基膦基)亚苄基)-4-环己基-3-硫代半脲(PNS-CyTs)]具有以具有不同电子和空间效应的配体为基础合成。这些配合物通过元素分析和各种光谱方法表征。配合物4的固态结构通过单晶X射线衍射法确定。在所有络合物中,配体均通过PNO / PNS供体原子与Ru(II)中心键合。通过将伯胺/酰胺与醇在低催化剂负载量下偶联,所有钌(II)配合物均被证明是用于合成仲胺/酰胺的高效催化剂,最高收率高达98%。 N-烷基化反应可以在中等条件下容易地进行,并且水的释放是唯一的副产物。另外,已经研究了取代基对配体,溶剂,碱和催化剂负载量对络合物催化活性的影响。有利地,在该过程中仅消耗了一当量的醇。 (C)2015 Elsevier B.V.保留所有权利。

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