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用于水相双相介质中1-辛烯氢甲酰化反应的可回收和可循环的水溶性磺化水杨醛亚胺铑(I)配合物。

Recoverable and recyclable water-soluble sulphonated salicylaldimine Rh(I) complexes for 1-octene hydroformylation in aqueous biphasic media.

作者信息

Matsinha Leah C, Mapolie Selwyn F, Smith Gregory S

机构信息

Department of Chemistry, University of Cape Town, P. Bag X3, Rondebosch 7701, Cape Town, South Africa.

出版信息

Dalton Trans. 2015 Jan 21;44(3):1240-8. doi: 10.1039/c4dt02740j.

DOI:10.1039/c4dt02740j
PMID:25415263
Abstract

A series of water-soluble Rh(i) mononuclear complexes of general formula: [Rh(sulphsal-X-R)(COD)] [sulphsal = sulphonated salicylaldimine, COD = cyclooctadiene; where R = H, Cl, CH3 and X = H, (t)Bu] have been synthesized. All the compounds were characterised using various spectroscopic and analytical techniques such as nuclear magnetic resonance spectroscopy, infrared spectroscopy, single crystal X-ray diffraction (for complex ) and mass spectrometry. All the compounds display excellent water-solubility at room temperature and were tested as catalyst precursors in the aqueous biphasic hydroformylation of 1-octene. The catalysts could be easily recovered by phase separation and were used up to 5 times without any significant loss in activity and 1-octene conversion. Very high yields of the expected aldehydes were obtained without addition of any phase transfer agents, co-solvents or hydrophobic ligands. Excellent aldehyde chemoselectivity is observed for all the catalysts but this varied each time the catalysts were recycled, with the formation of a small amount of internal olefins. ICP-OES and mercury poisoning experiments show that a combination of homogeneous catalysis and catalysis mediated by nanoparticles is taking place in these systems.

摘要

合成了一系列通式为[Rh(sulphsal-X-R)(COD)]的水溶性铑(I)单核配合物(sulphsal = 磺化水杨醛亚胺,COD = 环辛二烯;其中R = H、Cl、CH3且X = H、(t)Bu)。使用各种光谱和分析技术对所有化合物进行了表征,如核磁共振光谱、红外光谱、单晶X射线衍射(用于配合物)和质谱分析。所有化合物在室温下均表现出优异的水溶性,并作为1-辛烯水相两相氢甲酰化反应的催化剂前体进行了测试。通过相分离可轻松回收催化剂,且可重复使用5次,活性和1-辛烯转化率均无明显损失。在不添加任何相转移剂、共溶剂或疏水配体的情况下,获得了预期醛的高产率。所有催化剂均表现出优异的醛化学选择性,但每次催化剂循环使用时该选择性都会有所变化,伴有少量内烯烃的生成。电感耦合等离子体发射光谱法(ICP-OES)和汞中毒实验表明,这些体系中同时发生均相催化和纳米颗粒介导的催化作用。

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