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膦硫醇铂(II)配合物的结构偏好

Structural Preferences in Phosphanylthiolato Platinum(II) Complexes.

作者信息

Duran Josep, Polo Alfonso, Real Julio, Benet-Buchholz Jordi, Solà Miquel, Poater Albert

机构信息

Departament de Química Universitat de Girona Campus de Montilivi s/n 17071 Girona Spain.

Departament de Quıímica Universitat Autònoma de Barcelona 08193 Bellaterra Spain.

出版信息

ChemistryOpen. 2015 Jul 30;5(1):51-9. doi: 10.1002/open.201500136. eCollection 2016 Feb.

Abstract

The transition-metal complexes of heterotopic phosphanylthiolato ligands are useful in various reactions which depend on the stereochemistry of the complexes. Bis-chelate complex [Pt(SCH2CH2PPh2-κ(2) P,S)2] (1) was obtained in good yields by direct base-free substitution reaction of the corresponding phosphanylthiol (HSCH2CH2PPh2) with K2PtCl4 or by oxidative addition of the same phosphanylthiol to Pt(PPh3)4. In agreement with the antisymbiosis rule, complex 1 shows a cis-P,P arrangement in solid state crystallizing in the monoclinic system (C2/c). Density functional theory (DFT) calculations on 1 reveal the right characteristics for the preferred cis-P,P arrangement, rationalizing its formation. Direct base-free reaction of [PtCl2(1,5-cyclooctadiene)] with one equivalent of the same phosphanylthiol produce the trinuclear complex [PtCl(μ-SCH2CH2PPh2-κ(2) P,S)]3 (2) instead of the binuclear structure common in palladium and nickel derivatives. Crystals of 2 are triclinic (P 1‾ ) showing a sulfur-bridging edge-sharing cyclic trinuclear complex with square-planar coordination geometry around the platinum atoms and a Pt3S3 cycle in skew-boat conformation. This preference for the trinuclear structure was rationalized mechanistically and through conceptual DFT.

摘要

异位膦硫醇配体的过渡金属配合物在各种依赖于配合物立体化学的反应中很有用。通过相应的膦硫醇(HSCH2CH2PPh2)与K2PtCl4的直接无碱取代反应,或通过将相同的膦硫醇氧化加成到Pt(PPh3)4中,以良好的产率获得了双螯合配合物[Pt(SCH2CH2PPh2-κ(2) P,S)2] (1)。与反共生规则一致,配合物1在单斜晶系(C2/c)中结晶时在固态下显示出顺式P,P排列。对1的密度泛函理论(DFT)计算揭示了顺式P,P排列偏好的正确特征,使其形成合理化。[PtCl2(1,5-环辛二烯)]与一当量相同的膦硫醇的直接无碱反应生成了三核配合物[PtCl(μ-SCH2CH2PPh2-κ(2) P,S)]3 (2),而不是钯和镍衍生物中常见的双核结构。2的晶体为三斜晶系(P 1‾ ),显示出硫桥连的边共享环状三核配合物,铂原子周围具有平面正方形配位几何结构,以及呈扭船构象的Pt3S3环。通过机理分析和概念性DFT对这种对三核结构的偏好进行了合理化解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfa2/4906482/a6d1e387ba89/OPEN-5-51-g009.jpg

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