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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis and characterization of diiron dithiolate complexes containing a quinoxaline bridge
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Synthesis and characterization of diiron dithiolate complexes containing a quinoxaline bridge

机译:含喹喔啉桥的二硫代二铁二铁配合物的合成与表征

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potential model complex for the hydrogenase active site, [Fe _2{(μ-CH_2S)_2R}(CO)_6] (1) (R = quinoxaline), was synthesized by condensation of [(μ-LiS)_2Fe _2(CO)_6] with 2,3-bis(bromomethyl)quinoxaline. Reactions of 1 with bis(diphenylphosphino)methane (dppm) under a range of conditions yielded substituted complexes [Fe_2{(μ-CH_2S) 2R}(CO)_5(dppm)] (2), [Fe_2{(μ-CH _2S)_2R}(CO)_4(k~2-dppm)] (3) and [Fe_2{(μ-CH_2S)_2R}(CO)_4(μ-dppm)] (4). X-ray crystallography confirms that in 2, the dppm is terminally bonded to an iron atom via one phosphorus atom, whereas in 3, it acts as a chelating ligand to coordinate to an iron center in a dibasal-substituted manner. In 4, the dppm bridges the two iron atoms in a cis basal/basal fashion with one phosphorus bonded to each iron atom. Treatment of 1 with various tertiary phosphines at room temperature in acetonitrile (MeCN) generates a range of mono-substituted products [Fe_2{(μ-CH_2S) _2R}(CO)_5L] (5, L = PEt_3; 6, PMe_3; 7, PPh_3; 8, Me_2PPh). With ButNC, mono- and di-substituted [Fe_2{(μ-CH_2S)_2R}(CO) _5(ButNC)] (9) and [Fe_2{(μ-CH _2S)_2R}(CO)_4(ButNC)_2] (10) complexes are generated. All the complexes were characterized by elemental analysis, IR, MS and NMR spectroscopy. IR and NMR spectroscopic studies suggest that addition of excess HBF_4·OEt_2 acid to 1-4 led to the protonation of quinoxaline nitrogen atoms. In contrast, 5-10 were not stable in acidic media. Electrochemistry of 1-4 was investigated in the acetonitrile medium (0.1 M Bu_4NPF_6). The electrochemical instability of the reduced ligand, quinoxaline, and the reduced forms of these complexes revealed from the electrochemical studies suggests that they do not provide ideal models of the hydrogenase active site.
机译:通过[[μ-LiS] _2Fe _2(CO)的缩合反应合成了氢化酶活性位点的潜在模型复合物[Fe _2 {(μ-CH_2S)_2R}(CO)_6](1)(R =喹喔啉)。 _6]与2,3-双(溴甲基)喹喔啉。 1在一定条件下与双(二苯基膦基)甲烷(dppm)反应生成取代的配合物[Fe_2 {(μ-CH_2S)2R}(CO)_5(dppm)](2),[Fe_2 {(μ-CH_2S) )_2R}(CO)_4(k〜2-dppm)](3)和[Fe_2 {(μ-CH_2S)_2R}(CO)_4(μ-dppm)](4)。 X射线晶体学证实,在2中,dppm经由一个磷原子末端键合至铁原子,而在3中,其作为螯合配体以二元取代的方式配位至铁中心。在图4中,dppm以顺式基础/基础方式桥接两个铁原子,每个铁原子上键合有一个磷。在室温下在乙腈(MeCN)中用各种叔膦处理1会生成一系列单取代产物[Fe_2 {(μ-CH_2S)_2R}(CO)_5L](5,L = PEt_3; 6,PMe_3; 7 ,PPh_3; 8,Me_2PPh)。使用ButNC时,单取代和双取代的[Fe_2 {(μ-CH_2S)_2R}(CO)_5(ButNC)](9)和[Fe_2 {(μ-CH_2S)_2R}(CO)_4(ButNC)_2生成(10)个复合物。通过元素分析,IR,MS和NMR光谱对所有配合物进行表征。红外和核磁共振光谱研究表明,向1-4中添加过量的HBF_4·OEt_2酸会导致喹喔啉氮原子的质子化。相反,5-10在酸性介质中不稳定。在乙腈介质(0.1 M Bu_4NPF_6)中研究1-4的电化学。电化学研究显示,还原的配体喹喔啉和这些配合物的还原形式的电化学不稳定性表明它们不能提供理想的氢化酶活性位点模型。

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