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Similar ligand–metal bonding for transition metals and actinides? 5f1 U(C7H7)2–versus 3dn metallocenes

机译:过渡金属和act系元素的类似配体-金属键合? 5f1 U(C7H7)2-相对于3dn金属茂

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摘要

U(C7H7)2 is a fascinating 5f1 complex whose metal–ligand bonding was assigned in the literature as being very similar to 3d7 cobaltocene, based on a crystal-field theoretical interpretation of the experimental magnetic resonance data. The present work provides an in-depth theoretical study of the electronic structure, bonding, and magnetic properties of the 5f1 U(C7H7)2vs. 3d metallocenes with V, Co, and Ni, performed with relativistic wavefunction and density functional methods. The ligand to metal donation bonding in U(C7H7)2 is strong and in fact similar to that in vanadocene, in the sense that the highest occupied arene orbitals donate electron density into empty metal orbitals of the same symmetry with respect to the rotational axis (3dπ for V, 5fδ for U), but selectively with α spin (↑). For Co and Ni, the dative bonding from the ligands is β spin (↓) selective into partially filled 3dπ orbitals. In all systems, this spin delocalization triggers spin polarization in the arene σ bonding framework, causing proton spin densities opposite to those of the carbons. As a consequence, the proton spin densities and hyperfine coupling constants are negative for the Co and Ni complex, but positive for vanadocene. The of U(C7H7)2 is negative and similar to that of cobaltocene, but only because of the strong spin–orbit coupling in the actinocene, which causes to be opposite to the sign of the proton spin density. The study contributes to a better understanding of actinide 5f vs. transition metal 3d covalency, and highlights potential pitfalls when interpreting experimental magnetic resonance data in terms of covalent bonding for actinide complexes.
机译:U(C7H7)2 是一种引人入胜的5f 1 配合物,其金属-配体键在文献中被指定为与3d 7 非常相似钴茂,基于对实验磁共振数据的晶体场理论解释。本工作提供了对5f 1 U(C7H7)2 vs的电子结构,键合和磁性能的深入理论研究。具有相对论波函数和密度泛函方法的具有V,Co和Ni的3d茂金属。 U(C7H7)2 中的配体对金属的供体键很强,实际上与钒氧烯中的配体相似,在某种意义上说,占据最高的芳烃轨道将电子密度捐赠给了相同的空金属轨道相对于旋转轴对称(V为3dπ,U为5fδ),但选择性地具有自旋(↑)。对于Co和Ni,配体的固定键选择性旋转(↓)进入部分填充的3dπ轨道。在所有系统中,这种自旋离域会触发芳烃σ键构架中的自旋极化,从而导致质子自旋密度与碳相反。结果,对于Co和Ni配合物,质子自旋密度和超精细偶合常数为负,而对于钒二烯为正。 U(C7H7)2 的负值与钴茂的值类似,但仅是由于the系中的强自旋-轨道耦合,这与质子自旋的符号相反密度。这项研究有助于更好地理解in系元素5f与过渡金属3d的共价关系,并强调了在以experimental系元素络合物的共价键解释实验磁共振数据时的潜在陷阱。

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