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早期锕系元素配合物的系统研究:铀(IV)氟代酮亚胺

Systematic studies of early actinide complexes: uranium(IV) fluoroketimides.

作者信息

Schelter Eric J, Yang Ping, Scott Brian L, Thompson J D, Martin Richard L, Hay P Jeffrey, Morris David E, Kiplinger Jaqueline L

机构信息

Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Inorg Chem. 2007 Sep 3;46(18):7477-88. doi: 10.1021/ic700455b. Epub 2007 Aug 11.

Abstract

The reaction of (C5Me5)2U(CH3)2 with 2 equiv of N[triple bond]C-ArF gives the fluorinated uranium(IV) bis(ketimide) complexes (C5Me5)2U[-N=C(CH3)(ArF)]2 [where ArF=2-F-C6H4 (4), 3-F-C6H4 (5), 4-F-C6H4 (6), 2,6-F2-C6H3 (7), 3,5-F2-C6H3 (8), 2,4,6-F3-C6H2 (9), 3,4,5-F3-C6H2 (10), and C6F5 (11)]. These have been characterized by single-crystal X-ray diffraction, 1H and 19F NMR, cyclic voltammetry, UV-visible-near-IR absorption spectroscopy, and variable-temperature magnetic susceptibility. Density functional theory (DFT) results are reported for complexes 6 and 11 for comparison with experimental data. The most significant structural perturbation imparted by the F substitution in these complexes is a rotation of the fluorinated aryl (ArF) group out of the plane defined by the N=C(CMe)(Cipso) fragment in complexes 7, 9, and 11 when the ArF group possesses two o-fluorine atoms. Excellent agreement is obtained between the DFT-calculated and experimental crystal structures for 11, which displays the distortion, as well as for 6, which does not. In 7, 9, and 11, the out-of-plane rotation results in large angles (phi=53.7-89.4 degrees) between the planes formed by ketimide atoms N=C(CMe)(Cipso) and the ketimide aryl groups. Complexes 6 and 10 do not contain o-fluorine atoms and display interplanar angles in the range of phi=7-26.8 degrees. Complex 4 with a single o-fluorine substituent has intermediate values of phi=20.4 and 49.5 degrees. The distortions in 7, 9, and 11 result from an unfavorable steric interaction between one of the two o-fluorine atoms and the methyl group [-N=C(CH3)] on the ketimide ligand. All complexes exhibit UV/UIV and UIV/UIII redox couples, although the distortion in 7, 9, and 11 appears to be a factor in rendering the UIV/UIII couple irreversible. The potential separation between these couples remains constant at 2.15+/-0.03 V. The electronic spectra are dominated by unusually intense f-f transitions in the near-IR that retain nearly identical band energies but vary in intensity as a function of the fluorinated ketimide ligand, and visible and near-UV bands assigned to metal (5f)-to-ligand (pi*) charge-transfer and interconfiguration (5f2-->5f16d1) transitions, respectively. Variable-temperature magnetic susceptibility data for these complexes indicate a temperature-independent paramagnetism (TIP) below approximately 50 K that results from admixing of low-lying crystal-field excited states derived from the symmetry-split 3H4 5f2 manifold into the ground state. The magnitude of the TIP is smaller for the complexes possessing two o-fluorine atoms (7, 9, and 11), indicating that the energy separation between ground and TIP-admixed excited states is larger as a consequence of the greater basicity of these ligands.

摘要

(五甲基环戊二烯基)₂U(CH₃)₂与2当量的N≡C-ArF反应生成氟化铀(IV)双(酮亚胺)配合物(五甲基环戊二烯基)₂U[-N=C(CH₃)(ArF)]₂ [其中ArF = 2-F-C₆H₄(4)、3-F-C₆H₄(5)、4-F-C₆H₄(6)、2,6-F₂-C₆H₃(7)、3,5-F₂-C₆H₃(8)、2,4,6-F₃-C₆H₂(9)、3,4,5-F₃-C₆H₂(10)和C₆F₅(11)]。这些配合物已通过单晶X射线衍射、¹H和¹⁹F NMR、循环伏安法、紫外-可见-近红外吸收光谱以及变温磁化率进行了表征。报告了配合物6和11的密度泛函理论(DFT)结果,以便与实验数据进行比较。这些配合物中F取代引起的最显著结构扰动是,当ArF基团含有两个邻位氟原子时,在配合物7、9和11中,氟化芳基(ArF)基团旋转出由N=C(CMe)(Cipso)片段定义的平面。对于显示出畸变的11以及未显示畸变的6,DFT计算的晶体结构与实验晶体结构之间获得了极好的一致性。在7、9和11中,平面外旋转导致酮亚胺原子N=C(CMe)(Cipso)形成的平面与酮亚胺芳基形成的平面之间的夹角很大(φ = 53.7 - 89.4度)。配合物6和10不含有邻位氟原子,其平面间夹角在φ = 7 - 26.8度范围内。具有单个邻位氟取代基的配合物4的φ值介于中间,为20.4度和49.5度。7、9和11中的畸变是由于两个邻位氟原子之一与酮亚胺配体上的甲基[-N=C(CH₃)]之间不利的空间相互作用所致。所有配合物均表现出UV/UIV和UIV/UIII氧化还原对,尽管7、9和11中的畸变似乎是导致UIV/UIII对不可逆的一个因素。这些对之间的电位差保持恒定,为2.15±0.03 V。电子光谱主要由近红外区域异常强烈的f-f跃迁主导,这些跃迁保留了几乎相同的能带能量,但强度随氟化酮亚胺配体而变化,以及分别归因于金属(5f)到配体(π*)电荷转移和组态间(5f²→5f¹6d¹)跃迁的可见光和近紫外波段。这些配合物的变温磁化率数据表明,在大约50 K以下存在与温度无关的顺磁性(TIP),这是由于从对称分裂的³H₄ 5f²多重态导出的低能晶体场激发态混入基态所致。对于含有两个邻位氟原子的配合物(7、9和11),TIP的大小较小,这表明由于这些配体的碱性更强,基态与TIP混合激发态之间的能量间隔更大。

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