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含末端硝酸根配体的铂(IV)多核羟基桥联配合物

Polynuclear Hydroxido-Bridged Complexes of Platinum(IV) with Terminal Nitrato Ligands.

作者信息

Vasilchenko Danila, Berdugin Semen, Tkachev Sergey, Baidina Iraida, Romanenko Galina, Gerasko Olga, Korenev Sergey

机构信息

†Nikolaev Institute of Inorganic Chemistry, Siberian Branch of the Russian Academy of Science, 630090 Novosibirsk, Russian Federation.

‡Novosibirsk State University, 630090 Novosibirsk, Russian Federation.

出版信息

Inorg Chem. 2015 May 18;54(10):4644-51. doi: 10.1021/ic502896s. Epub 2015 Apr 24.

Abstract

For the first time the polynuclear hydroxido-bridged platinum(IV) nitrato complexes with nuclearity higher than two were isolated from nitric acid solutions of [Pt(H2O)2(OH)4] and crystallized as supramolecular compounds of macrocyclic cavitands cucurbit[n]uril (CB[n], n = 6,8) and 18-crown-6 ether: [Pt4(μ3-OH)2(μ2-OH)4(NO3)10]·CB[6]·25H2O (I), Pt6(μ3-OH)4(μ2-OH)6(NO3)122·CB[8]·50H2O (II), and [H3O⊂18-crown-6]2[Pt2(μ2-OH)2(NO3)8][Pt4(μ3-OH)2(μ2-OH)4(NO3)10] (III). The isolation of the compounds in the single crystalline state allows the determination of the structure of the tetranuclear and hexanuclear complexes [Pt4(μ3-OH)2(μ2-OH)4(NO3)10] and Pt6(μ3-OH)4(μ2-OH)6(NO3)12, which have been previously unknown in the solid state. Stability of Ptx(OH)y cores of the polynuclear nitrato complexes toward alkaline hydrolysis was verified by (195)Pt NMR spectroscopy. Analysis of (195)Pt NMR spectra of the compound III reveals that addition of every Pt(μ-OH)2Pt ring results in ∼260 ppm downfield shift relative to the mononuclear form, which allows the prediction of signal positions for complexes of higher nuclearity.

摘要

首次从[Pt(H₂O)₂(OH)₄]的硝酸溶液中分离出核数高于二的多核羟基桥联铂(IV)硝酸根配合物,并将其结晶为大环穴状配体葫芦[n]脲(CB[n],n = 6,8)和18-冠-6醚的超分子化合物:[Pt₄(μ₃-OH)₂(μ₂-OH)₄(NO₃)₁₀]·CB[6]·25H₂O(I)、Pt₆(μ₃-OH)₄(μ₂-OH)₆(NO₃)₁₂₂·CB[8]·50H₂O(II)和[H₃O⊂18-冠-6]₂[Pt₂(μ₂-OH)₂(NO₃)₈][Pt₄(μ₃-OH)₂(μ₂-OH)₄(NO₃)₁₀](III)。以单晶状态分离这些化合物使得能够确定四核和六核配合物[Pt₄(μ₃-OH)₂(μ₂-OH)₄(NO₃)₁₀]和Pt₆(μ₃-OH)₄(μ₂-OH)₆(NO₃)₁₂的结构,这些结构在固态中以前是未知的。通过¹⁹⁵Pt NMR光谱验证了多核硝酸根配合物的Ptx(OH)y核对于碱性水解的稳定性。对化合物III的¹⁹⁵Pt NMR光谱的分析表明,相对于单核形式,每添加一个Pt(μ-OH)₂Pt环会导致约260 ppm的向低场位移,这使得能够预测更高核数配合物的信号位置。

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