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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Sulfur atom transfer reactions of tungsten(VI) and tungsten(IV) chalcogenide complexes
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Sulfur atom transfer reactions of tungsten(VI) and tungsten(IV) chalcogenide complexes

机译:钨(VI)和钨(IV)硫族化物配合物的硫原子转移反应

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The sulfur, oxygen and chlorine atom transfer reactions of thio-W(VI) and -W(IV) complexes containing monodentate and ambidentate dithiophosphinate co-ligands are examined. Systems featuring monodentate ligands are complicated by the instability of the W(IV) species; significantly and in contrast to observations in thio-Mo chemistry, thio-W(VI) complexes such as Tp*WS2Cl fail to react with cyanide. Dithiophosphinate systems are more tractable and amenable to full description. The oxo-thio and bis(thio) complexes, Tp*WOS(S2PPh2-S) and Tp*WS2(S2PPh2-S) [Tp* = hydrotris(3,5-dimethylpyrazol-1-yl)borate] undergo sulfur atom transfer to tertiary phosphines to produce Tp*WO(S2PPh2-S,S') and Tp*WS(S2PPh2-S,S'), respectively, and phosphine sulfides. The X-ray crystal structures of Tp*WS2(S2PPh2) . 0.5CH(2)Cl(2) and TP*WS(S2PPh2) have been determined. Both complexes possess six-coordinate, distorted-octahedral tungsten centers ligated by tridentate fac-Tp*, terminal thio (W = S = 2.139-2.143 Angstrom) and mono- or bidentate dithiophosphinate ligands, respectively. The W(IV) complexes, Tp*WE(S2PPh2) (E = O, S), react with sulfur atom donors to produce thio-W(VI) complexes, Tp*WES(S2PPh2) but with oxygen atom donors to yield mixtures of Tp*WOE(S2PPh2) and Tp*WES{SP(O)Ph-2-S}. The latter result from oxygen atom transfer to phosphorus with concomitant sulfur atom transfer from phosphorus to tungsten. Catalytic sulfur atom transfer by thio-W complexes is demonstrated for the first time. (C) 2003 Elsevier Ltd. All rights reserved.
机译:研究了含有单齿和双齿二硫代次膦酸酯共配体的硫代-W(VI)和-W(IV)配合物的硫,氧和氯原子转移反应。 W(IV)物种的不稳定性使具有单齿配体的系统变得复杂。与硫-钼化学中的观察结果明显不同,诸如Tp * WS2Cl之类的硫-W(VI)配合物无法与氰化物反应。二硫代次膦酸酯系统更易于处理且易于完整描述。氧-硫和双(硫)配合物Tp * WOS(S2PPh2-S)和Tp * WS2(S2PPh2-S)[Tp * =氢三(3,5-二甲基吡唑-1-基)硼酸酯]经历硫原子转移生成叔膦,分别生成Tp * WO(S2PPh2-S,S')和Tp * WS(S2PPh2-S,S'),以及硫化膦。 Tp * WS2(S2PPh2)的X射线晶体结构。已确定0.5CH(2)Cl(2)和TP * WS(S2PPh2)。两种配合物均具有六配位,扭曲的八面体钨中心,分别由三齿fac-Tp *,末端硫基(W = S = 2.139-2.143埃)和单齿或二齿二硫代次膦酸酯配体连接。 W(IV)配合物Tp * WE(S2PPh2)(E = O,S)与硫原子​​供体反应生成硫-W(VI)配合物Tp * WES(S2PPh2)但与氧原子供体生成混合物Tp * WOE(S2PPh2)和Tp * WES {SP(O)Ph-2-S}的关系。后者是由于氧原子转移到磷,同时硫原子从磷转移到钨。首次证明了硫-W络合物催化硫原子转移。 (C)2003 Elsevier Ltd.保留所有权利。

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