首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Polynuclear carbon-rich organometallic complexes: Clarification of the role of the bridging ligand in the redox properties
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Polynuclear carbon-rich organometallic complexes: Clarification of the role of the bridging ligand in the redox properties

机译:多核富含碳的有机金属配合物:阐明桥联配体在氧化还原特性中的作用

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摘要

In this Perspective, we highlight the non-innocent behaviour of the bridging ligand in organometallic polynuclear metallic complexes displaying metal-carbon σ bonds between the metallic units and a strongly coupled conjugated carbon-rich bridging ligand. With the help of representative experimental and theoretical studies on polymetallic systems, but also on monometallic complexes, we point out that the level of implication of the carbon rich ligand in the redox processes is very sensitive to the nature of (i) the metal(s), (ii) the ancillary ligands and (iii) the carbon-rich ligand itself, and that this participation is frequently found to be major. Consequently, the general denomination M~((n + 1)) that is usually used for oxidized species gives the picture that only the metal density is affected, which is misleading. Moreover, for polymetallic species, these elements make the mixed valence denomination and the use of standard methodologies to rationalize intramolecular electron transfer, such as the Hush model inaccurate. Indeed, these theoretical treatments of mixed-valent complexes have at their core the assumption of metal-based redox state changes. Quantum mechanical calculations, coupled with spectroscopic methods, such as EPR spectroscopy, turn out to be a valuable suite of tools to both identify and better describe those systems with appreciable ligand redox non-innocent character. Finally, some examples and perspectives of applications for this carbon-rich type of complexes that take advantage of their peculiar electronic structure are presented.
机译:在此透视图中,我们强调了有机金属多核金属络合物中桥键配体的非清白行为,这些金属配合物显示出金属单元与强耦合的共轭富碳桥键配体之间的金属碳σ键。在多金属体系以及单金属络合物的代表性实验和理论研究的帮助下,我们指出氧化还原过程中富碳配体的含意水平对金属的性质非常敏感。 ),(ii)辅助配体和(iii)富碳配体本身,并且经常发现这种参与是主要的。因此,通常用于氧化物种的通用面额M〜((n + 1))给出的图片仅影响金属密度,这具有误导性。此外,对于多金属物种,这些元素使混合价面额成为可能,并使用标准方法来合理化分子内电子转移,例如Hush模型不准确。确实,这些混合价络合物的理论处理以金属为基础的氧化还原状态变化为核心。事实证明,量子力学计算与光谱方法(例如EPR光谱法)相结合,是鉴定和更好地描述那些具有明显配体氧化还原非无毒特性的系统的宝贵工具。最后,给出了利用其独特的电子结构的这种富含碳的配合物的应用实例和观点。

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