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探究同型双亚胺铜(I)配合物与异型双亚胺铜(I)配合物的光学和电化学性质。

Exploring the Optical and Electrochemical Properties of Homoleptic versus Heteroleptic Diimine Copper(I) Complexes.

机构信息

Division of Applied Physical Chemistry, Centre for Molecular Devices, Department of Chemistry , KTH Royal Institute of Technology , SE-10044 Stockholm , Sweden.

Division of Physical Chemistry, Centre for Molecular Devices, Department of Chemistry, Ångström Laboratory , Uppsala University , Box 523, SE-75120 Uppsala , Sweden.

出版信息

Inorg Chem. 2019 Sep 16;58(18):12167-12177. doi: 10.1021/acs.inorgchem.9b01487. Epub 2019 Sep 4.

Abstract

Due to ligand scrambling, the synthesis and investigation of the properties of heteroleptic Cu(I) complexes can be a challenging task. In this work, we have studied the optical and electrochemical properties of a series of homoleptic complexes, such as [Cu(dbda)], [Cu(dmp)], [Cu(Br-dmp)], [Cu(bcp)], [Cu(dsbtmp)], [Cu(biq)], and [Cu(dap)] in solution, and those of their heteroleptics [Cu(dbda)(dmp)], [Cu(dbda)(Br-dmp)], [Cu(dbda)(bcp)], [Cu(dbda)(dsbtmp)], [Cu(dbda)(biq)], [Cu(dbda)(dap)] adsorbed on the surface of anatase TiO (dbda = 6,6'-dimethyl-2,2'-bipyridine-4,4'-dibenzoic acid; dmp = 2,9-dimethyl-1,10-phenanthroline; Br-dmp = 5-bromo-2,9-dimethyl-1,10-phenanthroline; bcp = bathocuproine or 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline; dsbtmp = 2,9-di(-butyl)-3,4,7,8-tetramethyl-1,10-phenanthroline; biq = 2,2'-biquinoline; dap = 2,9-dianisyl-1,10-phenanthroline). We show that the maximum absorption wavelengths of the heteroleptic complexes on TiO can be reasonably predicted from those of the homoleptic complexes in solution through a simple linear relation, whereas the prediction of their redox properties is less trivial. In the latter case, two different linear patterns emerge: one including the ligands bcp, biq, and dap and another one including the ligands dmp, Br-dmp, and dsbtmp. We offer an interpretation of the data based on the chemical structure of the ligands. On one hand, ligands bcp, biq, and dap possess a more extended π-conjugated system, which gives a more prominent contribution to the overall redox properties of the ligand dbda. On the other hand, the ligands dmp, Br-dmp, and dsbtmp are all phenanthroline-based containing alkyl substituents and contribute less than dbda to the overall redox properties.

摘要

由于配体交换,异核铜(I)配合物的合成和性质研究可能是一项具有挑战性的任务。在这项工作中,我们研究了一系列同核配合物的光学和电化学性质,例如[Cu(dbda)]、[Cu(dmp)]、[Cu(Br-dmp)]、[Cu(bcp)]、[Cu(dsbtmp)]、[Cu(biq)]和[Cu(dap)]在溶液中的性质,以及它们的异核配合物[Cu(dbda)(dmp)]、[Cu(dbda)(Br-dmp)]、[Cu(dbda)(bcp)]、[Cu(dbda)(dsbtmp)]、[Cu(dbda)(biq)]、[Cu(dbda)(dap)]在锐钛矿 TiO 表面的吸附性质(dbda = 6,6'-二甲基-2,2'-联吡啶-4,4'-二羧酸;dmp = 2,9-二甲基-1,10-菲咯啉;Br-dmp = 5-溴-2,9-二甲基-1,10-菲咯啉;bcp = 邻二氯苯或 2,9-二甲基-4,7-二苯基-1,10-菲咯啉;dsbtmp = 2,9-二(-丁基)-3,4,7,8-四甲基-1,10-菲咯啉;biq = 2,2'-联喹啉;dap = 2,9-二苯-1,10-菲咯啉)。我们表明,通过简单的线性关系,可以合理地从溶液中的同核配合物预测异核配合物在 TiO 上的最大吸收波长,而它们的氧化还原性质的预测则不那么简单。在后一种情况下,出现了两种不同的线性模式:一种包括配体 bcp、biq 和 dap,另一种包括配体 dmp、Br-dmp 和 dsbtmp。我们根据配体的化学结构对数据进行了解释。一方面,配体 bcp、biq 和 dap 具有更扩展的π共轭体系,这对配体 dbda 的整体氧化还原性质有更显著的贡献。另一方面,配体 dmp、Br-dmp 和 dsbtmp 都是基于菲咯啉的,含有烷基取代基,对整体氧化还原性质的贡献小于 dbda。

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