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Rh nanoparticles from thiolate dimers: selective and reusable hydrogenation catalysts in ionic liquids

机译:Rh纳米粒子从硫醇盐二聚体:选择性在离子和可重用的加氢催化剂液体

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摘要

Thiolate-capped rhodium nanoparticles were synthesized by decomposition of the organometallic precursors [Rh(-SC12H25)(COD)](2) (I) and [Rh(-SC6H11)(COD)](2) (II) under hydrogen pressure, in imidazolium-based ionic liquids and organic solvent, without the external addition of ligands as stabilizers and were compared to RhNPs synthesized from [Rh(-OMe)(COD)](2). The use of ionic liquids during the synthesis of rhodium nanoparticles resulted in homogeneously well-dispersed systems as observed by TEM, where the thiolate ligand remains intact as demonstrated by XPS analysis and gas chromatography. The thiolate-capped rhodium nanoparticles generated from II were active catalysts in hydrogenation reactions with high selectivity towards alkene, nitro and imine groups. The absence of thiolate ligand generated very active catalytic systems and the hydrogenation of carbonyl groups was possible. The effect of thiol stabilizer was studied in the reductive N-alkylation to produce N-benzylaniline through one pot synthesis from benzaldehyde and nitrobenzene, where only the thiolate-capped RhNPs showed complete conversion and high selectivity. Additionally, the thiolate-capped RhNPs permitted the reuse of the catalytic systems for ten catalytic cycles for selected hydrogenation reactions after product separation.
机译:Thiolate-capped铑纳米粒子是合成的分解有机金属前体(Rh (-SC12H25) (COD)) (2)(我)和(Rh (-SC6H11) (COD))(2)(2)下氢压力,在imidazolium-based离子液体和有机溶剂,没有外部的配体稳定剂和RhNPs相比从合成(Rh (- ome) (COD)](2)。离子液体的合成铑纳米颗粒导致均匀的说法系统TEM观察到,硫醇盐配体仍然保持不变通过XPS分析和气体色谱法。纳米粒子生成二世的活跃高催化剂在加氢反应对烯烃选择性,硝基和亚胺组。非常活跃的催化系统和羰基化合物的加氢是可能的。硫醇稳定剂的影响进行了研究还原生产N-benzylaniline N-alkylation通过一锅合成苯甲醛和硝基苯,只有thiolate-cappedRhNPs显示完整的转换和高选择性。RhNPs允许重用的催化系统十催化循环加氢反应后产物分离。

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