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几何结构重要吗?双金属钌多吡啶类似物中配体位置的影响。

Does geometry matter? Effect of the ligand position in bimetallic ruthenium polypyridine siblings.

作者信息

Domínguez Sofía E, Pieslinger German E, Sanchez-Merlinsky Luciano, Baraldo Luis M

机构信息

Universidad de Buenos Aires, Facultad de Ciencias Exactas y Naturales, Departamento de Química Inorgánica, Analítica y Química Física, Pabellón 2, Ciudad Universitaria, C1428EHA, Buenos Aires, Argentina.

出版信息

Dalton Trans. 2020 Apr 1;49(13):4125-4135. doi: 10.1039/d0dt00040j.

DOI:10.1039/d0dt00040j
PMID:32150187
Abstract

In this work, we present the preparation of a complex (tpy)(bpy)Ru(μ-CN)Ru(py)4(OH2)3 (tpy = 2,2',6',2''-terpyridine; bpy = 2,2'-bipyridine; py = pyridine) that combines a ruthenium chromophore linked to another ruthenium ion that bears a labile position trans to the bridge. Substitution in this position is very attractive, as it allows us to place a quencher trans to the chromophore maximizing the separation between them. This complex allowed us to prepare a family of cyanide-bridged ruthenium polypyridines of general formula [Ru(tpy)(bpy)(μ-CN)Ru(py)4(L)]2/3+ (L = Cl-, NCS-, 4-dimethylaminopyridine or acetonitrile) and compare them with the related complexes [Ru(tpy)(bpy)(μ-CN)Ru(bpy)2(L)]2/3+ where the L ligand lies cis to the bridge. The mixed-valence form of these complexes shows evidence of strong coupling between the ruthenium ions and enhanced delocalization as the redox potential of the {Ru(py)4L} fragment increases. (TD)DFT calculations reproduce very well the experimental spectra of these complexes and indicate that when L = acetonitrile, the hole in the mixed-valence complex is almost equally distributed between both ruthenium ions. For L = DMAP and NCS- the π orbitals of the ligands are mixed with dπ orbitals of the Ru ions, resulting in partial delocalization of the charge on the ligands. The latter result illustrates that the trans configuration of these complexes is well-suited to extend the interaction beyond the bridged ruthenium ions.

摘要

在本工作中,我们展示了配合物(tpy)(bpy)Ru(μ-CN)Ru(py)4(OH2)3(tpy = 2,2',6',2''-三联吡啶;bpy = 2,2'-联吡啶;py = 吡啶)的制备,该配合物将一个钌发色团与另一个钌离子相连,该钌离子在与桥相对的位置上具有一个不稳定位点。在这个位置进行取代非常有吸引力,因为它使我们能够在发色团的反位放置一个猝灭剂,从而使它们之间的距离最大化。这种配合物使我们能够制备通式为[Ru(tpy)(bpy)(μ-CN)Ru(py)4(L)]2/3+(L = Cl-、NCS-、4-二甲基氨基吡啶或乙腈)的一系列氰基桥连钌多吡啶,并将它们与相关配合物[Ru(tpy)(bpy)(μ-CN)Ru(bpy)2(L)]2/3+进行比较,其中L配体位于桥的顺位。这些配合物的混合价态形式显示出钌离子之间存在强耦合的证据,并且随着{Ru(py)4L}片段氧化还原电位的增加,离域作用增强。(TD)DFT计算很好地再现了这些配合物的实验光谱,并表明当L = 乙腈时,混合价态配合物中的空穴几乎均匀分布在两个钌离子之间。对于L = DMAP和NCS-,配体的π轨道与Ru离子的dπ轨道混合,导致电荷在配体上部分离域。后一结果表明,这些配合物的反式构型非常适合将相互作用扩展到桥连钌离子之外。

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