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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >'Click' generated 1,2,3-triazole based organosulfur/selenium ligands and their Pd(II) and Ru(II) complexes: their synthesis, structure and catalytic applications
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'Click' generated 1,2,3-triazole based organosulfur/selenium ligands and their Pd(II) and Ru(II) complexes: their synthesis, structure and catalytic applications

机译:“点击”生成基于1,2,3-三唑的有机硫/硒配体及其Pd(II)和Ru(II)配合物:其合成,结构和催化应用

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1-(2,6-Diisopropylphenyl)-4-(phenylthio/selenomethyl)-1H-1,2,3-triazole (L1/L2) was synthesized by a 'Click' reaction and treated with [Pd(CH3CN)(2)Cl-2] for 5 h or [(eta(6)-C6H6) RuCl(mu-Cl)](2) for 8 h (followed by reaction with NH4PF6) at room temperature, resulting in complexes [Pd(L)Cl-2] (1 and 2) or [(eta(6)-C6H6) Ru(L) Cl]PF6 (3 and 4) (L = L1 or L2), respectively. The four complexes (1-4) and ligands (L1 and L2) were characterized with H-1, C-13{H-1} and Se-77{H-1} NMR spectroscopy and high resolution mass spectrometry. The single crystal structures of 1-4 were solved. The geometry of Pd in 1 and 2 is distorted square planar. The Pd-S and Pd-Se bond distances in 1 and 2 are 2.277(3) and 2.384(6) angstrom respectively. In 3 and 4, there is a pseudo-octahedral "piano-stool" type disposition of donor atoms around Ru. The Ru-S and Ru-Se bond lengths in 3 and 4 are 2.3728(12) and 2.4741(6) angstrom respectively. The catalytic activity of complexes 1 and 2 was explored for Suzuki-Miyaura coupling (SMC) in water and the Sonogashira coupling reaction. For various aryl bromides, including deactivated ones, complexes 1 and 2 were found to be efficient catalysts for both couplings. The optimum loading of 1 and 2 required to catalyze both coupling reactions is of the order of 0.001-2 mol% of Pd. For SMC, no additive or phase transfer catalyst was added. For catalysis of the transfer hydrogenation (TH) of aldehydes and ketones, the half-sandwich Ru(II) complexes 3 and 4 were explored. Their optimum catalytic loading was found to be 0.1-0.4 mol% of Ru. For TH, both the water solvent and the glycerol hydrogen source are environmentally friendly. The catalytic efficiencies of 3 and 4 are comparable with those reported for other catalysts for TH carried out with 2-propanol or glycerol as a H-source. 1, with a sulfur ligand, is more efficient than 2 (Se analog) for both SMC and the Sonogashira coupling. The activities of 3 and 4 for TH are in the order Se > S.
机译:通过点击反应合成1-(2,6-二异丙基苯基)-4-(苯硫基/硒甲基)-1H-1,2,3-三唑(L1 / L2)并用[Pd(CH3CN)(2 )Cl-2]在室温下放置5 h或[(eta(6)-C6H6)RuCl(mu-Cl)](2)在室温下放置8 h(随后与NH4PF6反应),生成络合物[Pd(L) Cl-2](1和2)或[[eta(6)-C6H6)Ru(L)Cl] PF6(3和4)(L = L1或L2)。通过H-1,C-13 {H-1}和Se-77 {H-1} NMR光谱和高分辨率质谱对四个配合物(1-4)和配体(L1和L2)进行了表征。解析了1-4的单晶结构。 Pd在1和2中的几何形状是扭曲的正方形平面。 1和2中的Pd-S和Pd-Se键距分别为2.277(3)和2.384(6)埃。在3和4中,Ru周围有一个供体原子的伪八面体“钢琴凳”型布置。 3和4中的Ru-S和Ru-Se键长分别为2.3728(12)和2.4741(6)埃。研究了配合物1和2在水中的Suzuki-Miyaura偶联(SMC)和Sonogashira偶联反应的催化活性。对于各种芳基溴化物,包括失活的芳基溴化物,发现配合物1和2是两种偶联的有效催化剂。催化两个偶联反应所需的1和2的最佳负载量约为Pd的0.001-2mol%。对于SMC,不添加添加剂或相转移催化剂。为了催化醛和酮的转移氢化(TH),研究了半夹心Ru(II)配合物3和4。发现它们的最佳催化负载量是Ru的0.1-0.4mol%。对于TH,水溶剂和甘油氢源都是环保的。 3和4的催化效率与报道的其他以2-丙醇或甘油作为H源进行的TH催化剂的催化效率相当。对于SMC和Sonogashira偶合,具有硫配体的1,比2(硒类似物)更有效。 TH的3和4的活动顺序为Se>S。

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