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Impact of the ligands on linear trimetal chains

机译:配体对线性三金属链的影响

摘要

Increasing attention has been given to the preparation and study of compounds with linear chains of metal atoms surrounded by four ligands. The majority of linear trimetal complexes are supported by dpa, the anion of dipyridylamine, having the general formula M3(dpa)4X2, where X is typically a monoanion. It has been shown that the behavior of the trinuclear system is far more complicated than might have been expected. Specifically, both symmetrical and unsymmetrical chains can occur and the interpretation of the magnetic properties of certain compounds has been a challenging task.Present in this dissertation is the bulk of work completed on an exploration of syntheses and characterizations of linear trichromium and trinickel compounds with different types of tridentate ligands. These ligands include 2,6-bis(phenylamino)pyridine,H2BPAP, (the corresponding dianion of this is denoted by BPAP) and a set of five unsymmetrical formamidines with different organic substituents ranging from strong electron-donating groups, such as -OCH3, to electron-withdrawing groups, e.g., F.Ligands impact on the trimetal chain in various ways. In the case of the M3(BPAP)42- ions, there are no axial interactions because these anionic species do not attract electron donating ligands. Thus they have properties which are different from those of M3(dpa)4X2 molecules. Most notably, the Ni3(BPAP)42- ion is diamagnetic and all three nickel ions can be described as square-planar, low-spin NiII centers.ivWhen unsymmetrical formamidines are used to support linear trichromium chains with a Cl anion at each end, the separation between terminal chromium atoms is significantly longer (ca. 0.15 - 0.25) than those in trichromium compounds reported earlier. Moreover, the unsymmetrical formamidinates tend to support symmetrical trichromium chains, while the rest of the known tridentate ligands typically yield unsymmetrical Cr36+ chains. The synthesis and structural studies of trinickel compounds with unsymmetrical formamidines are also presented.
机译:具有金属原子的线性链被四个配体包围的化合物的制备和研究已受到越来越多的关注。大部分线性三金属络合物由dpa(二吡啶胺的阴离子)支撑,通式为M3(dpa)4X2,其中X通常为单阴离子。已经表明,三核系统的行为比预期的要复杂得多。具体来说,对称链和不对称链都可能发生,对某些化合物的磁性能的解释一直是一项艰巨的任务。本论文的主要工作是探索不同结构的线性三铬和三镍化合物的合成和表征三齿配体的类型。这些配体包括2,6-双(苯氨基)吡啶,H2BPAP(其相应的二价阴离子用BPAP表示)和一组五个不对称的甲am,它们具有不同的有机取代基,其取代基均来自强供电子基团,例如-OCH3,吸电子基团,例如F.配体以各种方式冲击三金属链。在M3(BPAP)42-离子的情况下,没有轴向相互作用,因为这些阴离子物质不会吸引给电子配体。因此,它们具有不同于M3(dpa)4X2分子的特性。最值得注意的是,Ni3(BPAP)42-离子是反磁性的,所有三个镍离子都可以描述为方形,低自旋的NiII中心。iv当不对称甲form被用于支撑两端带有Cl阴离子的线性三价铬链时,末端铬原子之间的间隔比以前报道的三铬化合物中的间隔显着更长(约0.15-0.25)。而且,不对称甲酰胺化物倾向于支持对称的三铬链,而其余的已知三齿配体通常产生不对称的Cr36 +链。还介绍了三镍化合物与不对称甲am的合成和结构研究。

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    Lei Peng;

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  • 年度 2004
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