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操控电子转移——取代基对新型铜胍喹啉基配合物的影响

Manipulating electron transfer - the influence of substituents on novel copper guanidine quinolinyl complexes.

作者信息

Heck Joshua, Metz Fabian, Buchenau Sören, Teubner Melissa, Grimm-Lebsanft Benjamin, Spaniol Thomas P, Hoffmann Alexander, Rübhausen Michael A, Herres-Pawlis Sonja

机构信息

Institute of Inorganic Chemistry, RWTH Aachen University Landoltweg 1a 52074 Aachen Germany

Institute of Nanostructure and Solid State Physics, University of Hamburg Luruper Chaussee 149 22761 Hamburg Germany.

出版信息

Chem Sci. 2022 Jul 7;13(28):8274-8288. doi: 10.1039/d2sc02910c. eCollection 2022 Jul 20.

Abstract

Copper guanidine quinolinyl complexes act as good entatic state models due to their distorted structures leading to a high similarity between Cu(i) and Cu(ii) complexes. For a better understanding of the entatic state principle regarding electron transfer a series of guanidine quinolinyl ligands with different substituents in the 2- and 4-position were synthesized to examine the influence on the electron transfer properties of the corresponding copper complexes. Substituents with different steric or electronic influences were chosen. The effects on the properties of the copper complexes were studied applying different experimental and theoretical methods. The molecular structures of the bis(chelate) copper complexes were examined in the solid state by single-crystal X-ray diffraction and in solution by X-ray absorption spectroscopy and density functional theory (DFT) calculations revealing a significant impact of the substituents on the complex structures. For a better insight natural bond orbital (NBO) calculations of the ligands and copper complexes were performed. The electron transfer was analysed by the determination of the electron self-exchange rates following Marcus theory. The obtained results were correlated with the results of the structural analysis of the complexes and of the NBO calculations. Nelsen's four-point method calculations give a deeper understanding of the thermodynamic properties of the electron transfer. These studies reveal a significant impact of the substituents on the properties of the copper complexes.

摘要

铜胍喹啉基配合物由于其扭曲的结构,使得Cu(i)和Cu(ii)配合物之间具有高度相似性,因而可作为良好的内界态模型。为了更好地理解关于电子转移的内界态原理,合成了一系列在2位和4位带有不同取代基的胍喹啉基配体,以研究其对相应铜配合物电子转移性质的影响。选择了具有不同空间或电子效应的取代基。应用不同的实验和理论方法研究了取代基对铜配合物性质的影响。通过单晶X射线衍射在固态下以及通过X射线吸收光谱和密度泛函理论(DFT)计算在溶液中研究了双(螯合)铜配合物的分子结构,结果表明取代基对配合物结构有显著影响。为了更深入了解,对配体和铜配合物进行了自然键轨道(NBO)计算。根据Marcus理论,通过测定电子自交换速率来分析电子转移。将所得结果与配合物的结构分析结果以及NBO计算结果进行关联。Nelsen的四点法计算能更深入地理解电子转移的热力学性质。这些研究表明取代基对铜配合物的性质有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5983/9297705/4d6e817af101/d2sc02910c-f1.jpg

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