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二茂铁修饰的(酞菁基)(卟啉基)双层和三层稀土配合物:合成、结构和电化学性质。

Ferrocene-decorated (phthalocyaninato)(porphyrinato) double- and triple-decker rare earth complexes: synthesis, structure, and electrochemical properties.

机构信息

School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.

出版信息

Inorg Chem. 2012 May 21;51(10):5651-9. doi: 10.1021/ic202613r. Epub 2012 May 3.

DOI:10.1021/ic202613r
PMID:22554027
Abstract

A series of four mixed (phthalocyaninato)(porphyrinato) rare earth double-decker complexes (Pc)M[Por(Fc)(2)] [Pc = phthalocyaninate; Por(Fc)(2) = 5,15-di(ferrocenyl)-porphyrinate; M = Eu (1), Y (2), Ho (3), Lu (4)] and their europium(III) triple-decker counterpart (Pc)Eu(Pc)Eu[Por(Fc)(2)] (5), each with two ferrocenyl units at the meso-positions of their porphyrin ligands, have been designed and prepared. The double- and triple-decker complexes 1-5 were characterized by elemental analysis and various spectroscopic methods. The molecular structures of two double-deckers 1 and 4 were also determined by single-crystal X-ray diffraction analysis. Electrochemical studies of these novel sandwich complexes revealed two consecutive ferrocene-based one-electron oxidation waves, suggesting the effective electronic coupling between the two ferrocenyl units. Nevertheless, the separation between the two consecutive ferrocene-based oxidation waves increases from 1 to 4, along with the decrease of rare earth ionic radius, indicating the effect of rare earth size on tuning the coupling between the two ferrocenyl units. Furthermore, the splitting between the two ferrocene-based one-electron oxidations for triple-decker 5 is even smaller than that for 1, showing that the electronic interaction between the two ferrocene centers can also be tuned through changing the linking sandwich framework from double-decker to triple-decker. For further understanding of the electronic coupling between ferrocenyl groups, DFT calculation is carried out to clarify the electronic delocalization and the molecular orbital distribution in these double-decker complexes.

摘要

一系列四种混合(酞菁基)(卟啉基)稀土双层配合物(Pc)M[Por(Fc)(2)] [Pc = 酞菁基;Por(Fc)(2)= 5,15-二(二茂铁基)卟啉;M = Eu(1),Y(2),Ho(3),Lu(4)]及其相应的铕(III)三层配合物(Pc)Eu(Pc)Eu[Por(Fc)(2)](5),每个配合物都在其卟啉配体的中位置上具有两个二茂铁单元,已被设计和制备。双层和三层配合物 1-5 通过元素分析和各种光谱方法进行了表征。两个双层配合物 1 和 4 的分子结构也通过单晶 X 射线衍射分析进行了确定。这些新型夹心配合物的电化学研究揭示了两个连续的基于二茂铁的单电子氧化波,表明两个二茂铁单元之间存在有效的电子耦合。然而,两个连续的基于二茂铁的氧化波之间的分离从 1 到 4 增加,同时稀土离子半径减小,表明稀土大小对调节两个二茂铁单元之间的耦合的影响。此外,三层配合物 5 的两个基于二茂铁的单电子氧化的分裂甚至比 1 小,表明通过改变从双层到三层的连接夹心骨架,也可以调节两个二茂铁中心之间的电子相互作用。为了进一步了解二茂铁基团之间的电子耦合,进行了 DFT 计算以阐明这些双层配合物中的电子离域和分子轨道分布。

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