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双(并五苯)“潜艇”型金属二聚体夹心化合物 (C12H10)2M2 (M = Ti, V, Cr, Mn, Fe, Co, Ni)。

Bis(heptalene) "submarine" metal dimer sandwich compounds (C12H10)2M2 (M = Ti, V, Cr, Mn, Fe, Co, Ni).

机构信息

School of Physics and Chemistry, Research Center for Advanced Computation, Xihua University, Chengdu, 610039, China.

出版信息

J Mol Model. 2013 Jul;19(7):2723-37. doi: 10.1007/s00894-012-1540-y. Epub 2012 Aug 14.

Abstract

The bis(heptalene)dimetal complexes (C12H10)2M2 of the first row transition metals from Ti to Ni are predicted by density functional theory to exhibit "submarine" sandwich structures with a pair of metal atoms sandwiched between the two heptalene rings. For the early transition metal derivatives (C12H10)2M2 (M = V, Cr) there are two types of such structures. In one structural type the metals are sandwiched between two heptahapto heptalene rings with metal-metal distances (3.5-3.8 Å) too long for direct metal-metal bonding. The other type of (C12H10)2M2 (M = V, Cr, Mn) structure has a pair of bonded metal atoms sandwiched between a fully bonded heptalene ligand and a heptalene ligand bonded to the metals only through an eight-carbon heptafulvene subunit, leaving an uncomplexed cis-1,3-diene unit. The formal metal-metal bond orders in these latter structures are 3, 2, and 1 for M = V, Cr, and Mn with predicted bond lengths of 2.5, 2.7, and 2.8 Å, respectively. For (C12H10)2Fe2 a singlet structure with each iron atom sandwiched between a hexahapto and a tetrahapto heptalene ring is energetically preferred over an alternate structure with ferrocene-like iron atoms sandwiched between two pentahapto heptalene rings. Partial bonding of each heptalene ring to the metal atoms occurs in the late transition metal derivatives (C12H10)2M2 (M = Co, Ni). This leads to an unsymmetrical structure for the cobalt derivative and a structure for the nickel derivative with each nickel atom sandwiched between a trihapto ligand and a tetrahapto ligand.

摘要

第一过渡金属系列的 bis(heptalene)dimetal 配合物(C12H10)2M2(M 为 Ti 到 Ni),经密度泛函理论预测,具有“潜艇”夹心结构,一对金属原子夹在两个 heptalene 环之间。对于早期过渡金属衍生物(C12H10)2M2(M = V,Cr),存在两种这样的结构。在一种结构类型中,金属原子夹在两个 heptahapto heptalene 环之间,金属-金属距离(3.5-3.8 Å)太长,无法形成直接的金属-金属键。另一种类型的(C12H10)2M2(M = V,Cr,Mn)结构具有一对成键的金属原子,夹在完全成键的 heptalene 配体和仅通过八碳 heptafulvene 亚基与金属键合的 heptalene 配体之间,留下未配位的顺式 1,3-二烯单元。在这些后一种结构中,形式金属-金属键序分别为 M = V,Cr 和 Mn 的 3,2 和 1,预测键长分别为 2.5,2.7 和 2.8 Å。对于(C12H10)2Fe2,每个铁原子夹在六配位和四配位 heptalene 环之间的单重态结构在能量上优于具有类似二茂铁铁原子夹在两个五配位 heptalene 环之间的替代结构。在后期过渡金属衍生物(C12H10)2M2(M = Co,Ni)中,每个 heptalene 环与金属原子部分键合。这导致钴衍生物的结构不对称,镍衍生物的结构为每个镍原子夹在三配位配体和四配位配体之间。

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