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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Monodentate phosphine substitution in [Pd(kappa(3)-dppf)(PR3)][BF4](2) (dppf=1,1 '-bis(diphenyl-phosphino)ferrocene) compounds
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Monodentate phosphine substitution in [Pd(kappa(3)-dppf)(PR3)][BF4](2) (dppf=1,1 '-bis(diphenyl-phosphino)ferrocene) compounds

机译:[Pd(3)-DPPF)(PR3)] [BF4](2)(DPPF = 1,1'-Bis(二苯基 - 磷基)二茂铁)化合物中的单常膦替代物

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摘要

The ligand 1,1'-bis(diphenylphosphino) ferrocene (dppf) is commonly employed in a variety of catalytic systems. There are a variety of coordination modes known for dppf, the least studied being the kappa(3) coordination mode, in which both phosphorus atoms and the iron atom of dppf interact with another metal center. One such compound is the previously reported [Pd(kappa(3)-dppf)(PPh3)](2+). A series of related compounds, [Pd(kappa(3)-dppf)(P(p-C6H4R)(3))](2+) (R = OCH3, CH3, F and CF3), has been synthesized and characterized. The X-ray crystal structure of [Pd(dppf)(P(p-C6H4F)(3))][BF4](2) was determined. Electrochemical and computational studies indicate that the electron donor ability of the P(p-C6H4R)(3) ligands influences the properties of these compounds. Substitution reactions of the P(p-C6H4R)(3) ligands have been examined, and, in general, the more electron donating P(p-C6H4R)(3) ligands completely replace the less electron donating ones. The kinetics of the reaction of [Pd(kappa(3)-dppf)P(p-C6H4R)(3)](2+) with P(p-C6H4OCH3)(3) indicate that the reaction proceeds through a dissociative mechanism, contrary to the associative substitutions prevalent in square planar palladium(II) chemistry.
机译:配体1,1'-BIS(二苯基膦基)二茂铁(DPPF)通常用于各种催化系统中。有多种用于DPPF的协调模式,最少研究是Kappa(3)配位模式,其中磷原子和DPPF的铁原子与另一金属中心相互作用。其中一种化合物是先前报道的[Pd(3)-DPPF)(PPH3)](2+)。已经合成并表征了一系列相关化合物[Pd(κ(3)-dPPF)(p(p-c6h4r)(p(p-c6h4r)(3))](2+)(r = Och3,ch3,f和cf3)。测定[Pd(DPPF)(P(p-C6H4F)(3))] [BF4](2)的X射线晶体结构。电化学和计算研究表明,P(P-C6H4R)(3)配体的电子给体能力影响了这些化合物的性质。已经研究了P(P-C6H4R)(3)配体的取代反应,并且通常,越多的电子提供P(P-C6H4R)(3)配体完全替代较低的电子捐赠者。 [Pd(3)-DPPF)P(P-C6H4R)(3)](2+)与P(P-C6H4CH3)(3)的反应的动力学表明反应通过分离机制进行,与方形平面钯(II)化学普遍的缔合物相反。

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