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卤化物桥连的面对面双镍(II)大环配体配合物的固态结构和磁性:配体介导的电子构型互换

Solid-state structures and magnetic properties of halide-bridged, face-to-face bis-nickel(II)-macrocyclic ligand complexes: ligand-mediated interchanges of electronic configuration.

作者信息

Szacilowski Konrad T, Xie Puhui, Malkhasian Aramice Y S, Heeg Mary Jane, Udugala-Ganehenege Manawadevi Y, Wenger Lowell E, Endicott John F

机构信息

Department of Chemistry, Wayne State University, Detroit, Michigan 48202-3929, USA.

出版信息

Inorg Chem. 2005 Aug 22;44(17):6019-33. doi: 10.1021/ic050147x.

Abstract

Dramatic differences are found between the ambient and 100 K X-ray structures of L(2)Ni2Br22 (L(2) = alpha,alpha'-bis{(5,7-dimethyl-1,4,8,11-tetraazacyclotetradeca-6-yl)-o-xylene), in which the bromide-bridged, bimetallic, macrocyclic ligand complexes of nickel(II) are held face-to-face and in which each bimetallic complex has a net triplet spin multiplicity. The ambient structure of this complex consists of very highly ordered, infinite chains of alternating R and S isomers in which the identical Ni(II) coordination spheres are near to the average expected for the high- and low-spin Ni(II) coordination sites, and there is appreciable stereochemical strain in the linkage of the macrocyclic ligands to the phenyl ring. In contrast, every other dinickel complex of the 100 K structure is displaced about 40 pm along the infinite chains to form tetrameric repeat units (pairs of dinickel complexes), in which each dinickel complex has well-defined high-spin and low-spin Ni(II) coordination sites; the high-spin sites are adjacent in the tetramers, and the stereochemical strain in the linkage to the phenyl spacer is relaxed. The molecular magnetic moments and structural contrasts are similar for the 100 K structure and the previously reported ambient structure of L(2)Ni2Br3 complex for which the molecular magnetic moments also correspond to a single triplet state per complex. The halide-bridged, monochloro- and monobromo dinickel complexes also have triplet spin multiplicity, and they crystallize with a coordinated perchlorate completing the axial coordination of the high-spin Ni(II) site, while the other Ni(II) site of these halide-bridged complexes has equatorial Ni-N bond lengths typical of low-spin Ni(II) coordination. The bridging halide is sandwiched between the face-to-face macrocyclic ligand Ni(II) moieties and slightly off the Ni-Ni axis in all of the complexes. The temperature dependence of the magnetic moments of the series of complexes indicates that their singlet-triplet energy gaps are small, with zero point energy differences that are generally less than 10(3) cm(-1). The very weak metal-metal electronic coupling, the triplet state spin multiplicity of each dinickel complex, and the averaged high-spin/low-spin coordination environments of the ambient structure implicate a vibronic mechanism for the electronic configurational exchange in the dibromo and tribromo complexes. The single molecular vibrational mode that correlates with the configurational exchange in these complexes includes the concerted motion of the bridging bromide between the Ni(II) centers. Activation of this vibrational mode is sufficient to effect the configurational exchange. These complexes present especially clear examples of the effects of the coupling of nuclear vibrational motions to the interchange of electronic configuration between two different centers.

摘要

L(2)Ni2Br22(L(2)=α,α'-双{(5,7-二甲基-1,4,8,11-四氮杂环十四碳-6-基)-邻二甲苯})的室温与100K X射线结构之间发现了显著差异,其中镍(II)的溴化物桥连双金属大环配体络合物面对面排列,且每个双金属络合物具有净三重态自旋多重性。该络合物的室温结构由非常高度有序的、交替的R和S异构体的无限链组成,其中相同的Ni(II)配位球接近高自旋和低自旋Ni(II)配位点的平均预期值,并且大环配体与苯环的连接中存在明显的立体化学应变。相比之下,100K结构的每隔一个二镍络合物沿着无限链位移约40皮米,形成四聚体重复单元(二镍络合物对),其中每个二镍络合物具有明确的高自旋和低自旋Ni(II)配位点;高自旋位点在四聚体中相邻,并且与苯基间隔基连接中的立体化学应变得到缓解。100K结构与先前报道的L(2)Ni2Br3络合物的室温结构的分子磁矩和结构对比相似,其分子磁矩也对应于每个络合物的单个三重态。卤化物桥连的一氯和一溴二镍络合物也具有三重态自旋多重性,并且它们结晶时带有一个配位高氯酸根,完成高自旋Ni(II)位点的轴向配位,而这些卤化物桥连络合物的另一个Ni(II)位点具有低自旋Ni(II)配位典型的赤道Ni-N键长。在所有络合物中,桥连卤化物夹在面对面的大环配体Ni(II)部分之间,且稍微偏离Ni-Ni轴。该系列络合物磁矩的温度依赖性表明它们的单重态-三重态能隙很小,零点能量差通常小于10(3)厘米(-1)。非常弱的金属-金属电子耦合、每个二镍络合物的三重态自旋多重性以及室温结构的平均高自旋/低自旋配位环境暗示了二溴和三溴络合物中电子构型交换的振动电子机制。与这些络合物中的构型交换相关的单个分子振动模式包括桥连溴在Ni(II)中心之间的协同运动。这种振动模式的激活足以实现构型交换。这些络合物特别清楚地展示了核振动运动与两个不同中心之间电子构型交换的耦合效应。

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