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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Structural diversity of halocarbonyl molybdenum and tungsten PNP pincer complexes through ligand modifications
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Structural diversity of halocarbonyl molybdenum and tungsten PNP pincer complexes through ligand modifications

机译:通过配体修饰的卤代羰基钼和钨PNP钳形配合物的结构多样性

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This work presents a comparative study of a series of halocarbonyl Mo(II) and W(II) complexes of the types [M(PNP)(CO)(3)X]X and [M(PNP)(CO)(2)X-2] (M = Mo, W; X = I, Br), featuring PNP pincer ligands based on a 2,6-diaminopyridine scaffold. The complexes were prepared and fully characterized. The syntheses of these complexes were accomplished by treatment of [M(PNP)(CO)(3)] with stoichiometric amounts of I-2 and Br-2, respectively. The modification of the 2,6-diaminopyridine scaffold by introducing NMe and NPh instead of NH spacers with concomitant modification of the phosphine moieties changed the steric and electronic properties of the PNP ligand significantly. While in the case of NH linkers exclusively cationic seven-coordinate complexes of the type [M(PNP)(CO)(3)X](+) were obtained with NMe and NPh spacers neutral seven-coordinate complexes of the type [M(PNP)(CO)(2)X-2] were afforded. In the case of the latter, when the reaction is performed in the presence of CO also [M(PNP)(CO)(3)X](+) complexes are formed which slowly lose CO to give [M(PNP)(CO)(2)X-2]. The halocarbonyl tungsten chemistry parallels that of molybdenum. The only exception is molybdenum in conjunction with the PNPMe-iPr ligand, where the coordinatively unsaturated complex [Mo(PNPMe-iPr)(CO)X-2] is formed. DFT mechanistic studies reveal that the seven-coordinate complexes should be the thermodynamic as well as the kinetic products. Since [Mo(PNPMe-iPr)(CO)X-2] is the observed product it suggests that the reaction follows an alternative path. Structures of representative complexes were determined by X-ray single crystal analyses.
机译:这项工作提出了一系列[M(PNP)(CO)(3)X] X和[M(PNP)(CO)(2)类型的卤代羰基Mo(II)和W(II)配合物的比较研究。 [X-2](M = Mo,W; X = I,Br),其特征在于基于2,6-二氨基吡啶骨架的PNP钳位配体。制备复合物并充分表征。这些配合物的合成是通过分别用化学计量的I-2和Br-2处理[M(PNP)(CO)(3)]来完成的。通过引入NMe和NPh而不是NH间隔基来修饰2,6-二氨基吡啶骨架,并同时修饰膦部分,显着改变了PNP配体的空间和电子性质。而在NH连接子的情况下,仅使用NMe和NPh间隔基获得中性的[M(PNP)(CO)(3)X](+)型阳离子七坐标配合物[M(提供了PNP)(CO)(2)X-2]。在后者的情况下,当反应在CO的存在下进行时,也会形成[M(PNP)(CO)(3)X](+)配合物,这些配合物缓慢地失去CO生成[M(PNP)(CO) )(2)X-2]。卤代羰基钨的化学性质与钼相似。唯一的例外是钼与PNPMe-iPr配体结合,形成了配位不饱和配合物[Mo(PNPMe-iPr)(CO)X-2]。 DFT机理研究表明,七坐标配合物既是热力学也是动力学产物。由于[Mo(PNPMe-iPr)(CO)X-2]是观察到的产物,因此表明该反应遵循另一条路径。代表性配合物的结构通过X射线单晶分析确定。

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