Organic Chemistry & Photochemistry, Université libre de Bruxelles, ULB, CP 160/08, 50 Avenue F.D. Roosevelt, 1050 Brussels, Belgium.
Dalton Trans. 2013 Oct 21;42(39):14188-99. doi: 10.1039/c3dt51541a.
In view of preparing Cu polynuclear complexes with dipyrromethene ligands, the mononuclear complexes [Cu(II)(dipy)2] (dipyH = 5-phenyldipyrromethene) and [Cu(II)(dpdipy)2] (dpdipyH = 1,5,9-triphenyldipyrromethene) have been prepared and characterized by X-ray crystallography, mass spectrometry and EPR spectroscopy. Their peculiar redox and spectroscopic (absorption/emission) behaviours are discussed. In contrast to Cu(II) complexes of 1,1'-bidypyrrin, the reduction electrolysis of [Cu(II)(dpdipy)2] leads to decomposition products on a time scale of a few hours. Moreover in relation to this observation, Cu(I)(dpdipy)2 could not be synthesized in spite of the Cu(I) core protection by the phenyl substituents in ortho position of the nitrogen atoms. Theoretical calculations provide some explanations for this instability. Interestingly [Cu(II)(dipy)2] and [Cu(II)(dpdipy)2] display weak luminescence at room temperature, attributed to a ligand centered emission.
为了制备具有二吡咯甲烷配体的铜多核配合物,我们制备并通过 X 射线晶体学、质谱和电子顺磁共振光谱对单核配合物[Cu(II)(dipy)2](dipyH=5- 苯基二吡咯甲烷)和[Cu(II)(dpdipy)2](dpdipyH=1,5,9-三苯基二吡咯甲烷)进行了表征。讨论了它们独特的氧化还原和光谱(吸收/发射)行为。与 1,1'-联吡啶的 Cu(II)配合物不同,[Cu(II)(dpdipy)2]的还原电解在几个小时的时间尺度内导致分解产物。此外,尽管氮原子的邻位苯基取代基保护了 Cu(I)核,但仍未能合成Cu(I)(dpdipy)2。理论计算为这种不稳定性提供了一些解释。有趣的是,[Cu(II)(dipy)2]和[Cu(II)(dpdipy)2]在室温下显示微弱的发光,归因于配体中心发射。