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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, Molecular, and Electronic Structure of (eta(8)-C8H8)Ln(scorpionate) Half-Sandwich Complexes: An Experimental Key to a Better Understanding of f-Element-Cyclooctatetraenyl Bonding
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Synthesis, Molecular, and Electronic Structure of (eta(8)-C8H8)Ln(scorpionate) Half-Sandwich Complexes: An Experimental Key to a Better Understanding of f-Element-Cyclooctatetraenyl Bonding

机译:(eta(8)-C8H8)Ln(Scorpionate)Half-Sandwich配合物的合成,分子和电子结构:更好地理解f元素-环辛基戊烯基键合的实验关键

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Synthetic routes leading to two series of (eta(8)-cyclooctatetraenyl)lanthanide(III) scorpionate "mixed sandwich" complexes are reported. The early lanthanide derivatives (COT)Ln(Tp) (Ln = Ce (1), Pr (2), Nd (3), Sm (4)) and (COT)Ln(Tp(Me2)) (Ln = Ce (5), Pr (6), Nd (7), Sm (8)) (COT = eta(8)-cyclooctatetraenyl, Tp = hydrotris(pyrazolyl)borate, Tp(Me2) = hydrotris(3,5-dimethyl pyrazolyl)borate) were obtained by reacting the dimeric halide precursors [(COT)Ln(eta-Cl)(THF)](2) with K[Tp] or K[Tp(Me2)], respectively For the late lanthanide elements a different synthetic route was developed. The complexes (COT)Ln(Tp) (Ln = Er (9), Lu (10)) were made by the reaction of (Tp)LnCl(2)(THF)(1,5) with equivalent amounts of K2C8H8. All new compounds were isolated as intensely colored crystalline materials and fully characterized by elemental analyses and spectroscopic methods. The molecular structures of 4, 5, and 8 were elucidated by X-ray diffraction. The optical spectra of compounds 2 and 4-8 were run at room and low temperatures. From the spectra obtained, the underlying crystal field splitting patterns of complexes 2, 4, 6, and 7 were derived and simulated by fitting the free parameters of a phenomenological Hamiltonian. The parameters used allow the estimation of the crystal field strengths experienced by the Ln(3+) central ions and the insertion of complexes 2, 4, 6, and 7 into empiric nephelauxetic and relativistic nephelauxetic series. Besides, the experimentally oriented non-relativistic and relativistic molecular orbital schemes of compound 6 were set up and compared with the results of previous model calculations on [Ln(COT)(2)](-), Pa(COT)(2), and U(COT)(2).
机译:合成途径导致两个系列(eta(8)-cyclooctatetraenyl)lanthanide(III)蝎形“混合三明治”复合物。早期镧系元素衍生物(COT)Ln(Tp)(Ln = Ce(1),Pr(2),Nd(3),Sm(4))和(COT)Ln(Tp(Me2))(Ln = Ce( 5),Pr(6),Nd(7),Sm(8))(COT = eta(8)-环辛酸酯基,Tp =氢三(吡唑基)硼酸酯,Tp(Me2)=氢三(3,5-二甲基吡唑基)通过使二聚卤化物前体[(COT)Ln(eta-Cl)(THF)](2)与K [Tp]或K [Tp(Me2)]反应获得硼酸盐)。路线被开发了。配合物(COT)Ln(Tp)(Ln = Er(9),Lu(10))是通过(Tp)LnCl(2)(THF)(1,5)与等量的K2C8H8反应制得的。所有新化合物均被分离为强烈着色的结晶物质,并通过元素分析和光谱学方法进行了全面表征。通过X射线衍射阐明了4、5和8的分子结构。化合物2和4-8的光谱在室温和低温下运行。从获得的光谱中,通过拟合现象学哈密顿量的自由参数,推导并模拟了复合物2、4、6和7的基本晶体场分裂模式。使用的参数可以估算Ln(3+)中心离子所经历的晶体场强度,以及将络合物2、4、6和7插入经验性肾素和相对论肾素系列中。此外,建立了以实验为导向的化合物6的非相对论和相对论分子轨道方案,并将其与先前关于[Ln(COT)(2)](-),Pa(COT)(2)的模型计算结果进行了比较。和U(COT)(2)。

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