首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Use of a Ru/Os-CO-diiodide precursor to synthesize heteroleptic 1-alkyl-2-(arylazo)imidazole complexes: The structural characterization, electrochemistry and catalytic activity
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Use of a Ru/Os-CO-diiodide precursor to synthesize heteroleptic 1-alkyl-2-(arylazo)imidazole complexes: The structural characterization, electrochemistry and catalytic activity

机译:Ru / Os-CO-二碘化物前体在合成杂配的1-烷基-2-(芳基偶氮)咪唑配合物中的用途:结构表征,电化学和催化活性

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摘要

Trans-(I,I)-[MI_2(CO)_2(RaaiR′)] (M = Ru, Os) (RaaiR′ = 1-alkyl-2-(arylazo)imidazoles) complexes have been synthesized by the reaction of RaaiR′ and [Ru(CO)_4I_2] or [Os(CO)_4I_2] in acetonitrile solution and the complexes have been characterized by elemental analysis and spectral (FT-IR, UV-Vis, 1H NMR) data. The structural confirmation has been determined by single crystal X-ray diffraction of trans-(I,I)-[MI_2(CO) _2(HaaiEt)] (M = Ru, 3b; Os, 5b) (HaaiEt = 1-ethyl-2-(phenylazo) imidazole) and has shown a distorted octahedral geometry with a trans-I,I and cis-CO, CO configuration. The complexes show a M(III)/M(II) couple and the reduction of the chelated azoimine ligand. These complexes act as catalysts in the oxidation of PhCH_2OH to PhCHO, 2-butanol (C_4H _9OH) to 2-butanone, cyclopentanol (C_5H_9OH) to cyclopentanone and cyclohexanol to cyclohexanone by N-methylmorpholine-N-oxide (NMO). The molecular orbital diagram has been drawn by density functional theory (DFT) using the optimized geometry from the single crystal X-ray parameters. The assignments of electronic spectra have been carried out by TD-DFT calculations both in the gas and acetonitrile phases.
机译:通过RaaiR的反应合成了反式-(I,I)-[MI_2(CO)_2(RaaiR')](M = Ru,Os)(RaaiR'= 1-烷基-2-(芳基偶氮)咪唑)配合物'和[Ru(CO)_4I_2]或[Os(CO)_4I_2]在乙腈溶液中的形成,并通过元素分析和光谱(FT-IR,UV-Vis,1H NMR)数据对络合物进行了表征。通过反式-(I,I)-[MI_2(CO)_2(HaaiEt)](M = Ru,3b; Os,5b)(HaaiEt = 1-乙基- 2-(苯基偶氮)咪唑),并显示出扭曲的八面体几何结构,具有反式I,I和顺式CO,CO构型。该配合物显示出M(III)/ M(II)对和螯合的偶氮亚胺配体的还原。这些配合物在通过N-甲基吗啉-N-氧化物(NMO)将PhCH_2OH氧化为PhCHO,2-丁醇(C_4H _9OH)氧化为2-丁酮,环戊醇(C_5H_9OH)氧化为环戊酮和环己醇氧化为环己酮中充当催化剂。通过密度泛函理论(DFT)使用单晶X射线参数的优化几何结构绘制了分子轨道图。电子光谱的分配已通过TD-DFT计算在气相和乙腈中进行。

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