首页> 外文期刊>Inorganica Chimica Acta >Influence of the phosphine arrangement on the reactivity of palladium(II) and platinum(II) polyphosphine complexes with copper(I) chloride
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Influence of the phosphine arrangement on the reactivity of palladium(II) and platinum(II) polyphosphine complexes with copper(I) chloride

机译:膦排列对钯(II)和铂(II)多膦配合物与氯化铜(I)的反应性的影响

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The distorted square-planar complexes [Pd(PNHP)Cl]Cl (1) (PNHP = bis[2-(diphenylphosphino)ethyl]amine), [M(P-3)Cl]Cl [P-3 = bis[2-(diphenylphosphino)ethyl]phenylphosphine; M = Pd (2), Pt (3)] and [Pt(NP3)Cl]Cl (5) (NP3 = tris[2-(diphenylphosphino)ethyl]amine), coexisting in the later case with a square-pyramidal arrangement, react with one equivalent of CuCl to give the mononuclear heteroionic systems [M(L)Cl](CuCl2) [L = PNHP, M = Pd (1a); L = P-3,P- M = Pd (2a), Pt (3a); L = NP3, M = Pt (5a)]. The crystal structure of 3a confirms that Pt(II) retains the distorted square-planar geometry of 3 in the cation with P3 acting as tridentate chelating ligand, the central P atom being trans to one chloride. The counter anion is a nearly linear dichlorocuprate(l) ion. However, the five-coordinate complexes [Pd(NP3)Cl]Cl (4), [M(PP3)Cl]Cl (M = Pd (6), Pt (7); PP3 = tris[2-(diphenylphosphino)ethyl] phosphine) containing three fused five-membered chelate rings undergo a ring-opening by interaction with one (4, 6, 7) and two (6, 7) equivalents of CuCl with formation of neutral MCu(L)Cl-3 [L = NP3, M = Pd (4a); L = PP3, M = Pd (6a), Pt (7a)] and ionic [MCU(PP3)Cl-2](CuCl2) [M = Pd (6b), Pt (7b)] compounds, respectively. The heteronuclear systems were shown by P-31 NMR to have structures where the phosphines are acting as tridentate chelating ligands to M(II) and monodentate bridging to Cu(I). Further additions of CuCl to the neutral species 6a and 7a in a 1: 1 ratio resulted in the achievement of the ionic complexes 6b and 7b with CuCl2- ions as counter anions. It was demonstrated that the formation of heterobimetallic or just mononuclear mixed salt complexes was clearly influenced by the polyphosphine arrangement with the tripodal ligands giving the former compounds. However, complexes [M(NP3)Cl]Cl constitute one exception and the type of reaction undergone versus CuCl is a function of the d(8) metal centre. (c) 2005 Elsevier B.V. All rights reserved.
机译:扭曲的方形平面络合物[Pd(PNHP)Cl] Cl(1)(PNHP =双[2-(二苯基膦基)乙基]胺),[M(P-3)Cl] Cl [P-3 =双[2 -(二苯基膦基)乙基]苯基膦; M = Pd(2),Pt(3)]和[Pt(NP3)Cl] Cl(5)(NP3 =三[2-(二苯基膦基)乙基]胺),在后一种情况下以方形金字塔形排列共存,与一当量的CuCl反应,得到单核杂离子系统[M(L)Cl](CuCl2)[L = PNHP,M = Pd(1a); L = P-3,PM = Pd(2a),Pt(3a); L = NP3,M = Pt(5a)]。 3a的晶体结构证实,Pt(II)在阳离子中保留了3的扭曲的方平面几何形状,其中P3充当三齿螯合配体,中心P原子反成了一个氯化物。该抗衡阴离子是接近线性的二氯铜(l)离子。但是,五配位络合物[Pd(NP3)Cl] Cl(4),[M(PP3)Cl] Cl(M = Pd(6),Pt(7); PP3 =三[2-(二苯基膦基)乙基] ]膦)包含三个稠合的五元螯合环,通过与一(4、6、7)和两(6、7)当量的CuCl相互作用形成中性MCu(L)Cl-3 [L]进行开环= NP3,M = Pd(4a); L = PP3,M = Pd(6a),Pt(7a)]和离子型[MCU(PP3)Cl-2](CuCl2)[M = Pd(6b),Pt(7b)]化合物。通过P-31 NMR显示,异核体系具有这样的结构,其中膦充当M(II)的三齿螯合配体和Cu(I)的单齿桥联。以1∶1的比例向中性物质6a和7a中进一步添加CuCl导致获得了具有CuCl 2-离子作为抗衡阴离子的离子配合物6b和7b。已证明,异双金属或仅单核混合盐配合物的形成明显受到多膦排列的影响,三脚架配体产生了前一种化合物。但是,配合物[M(NP3)Cl] Cl构成一个例外,与CuCl相比,反应类型是d(8)金属中心的函数。 (c)2005 Elsevier B.V.保留所有权利。

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