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Imidazo-Phenanthroline Ligands as a Convenient Modular Platform for the Preparation of Heteroleptic Cu(I) Photosensitizers

机译:咪唑并菲咯啉配体作为制备杂多铜(I)光敏剂的便捷模块化平台

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The capture and storage of solar energy is a promising option to overcome current energy issues. To put such systems into practice, molecular photosensitizers should be based on abundant metals and possess a strong absorption capability for visible light. Therefore, a systematic series of four novel heteroleptic Cu(I) complexes of the type [(P^P)Cu(N^N)] + (with P^P = xantphos and N^N = different diimine ligands) has been prepared. As an essential feature, these copper photosensitizers contain an imidazole moiety at the backbone of the diimine ligand, which increases the aromatic π-system compared to phenanthroline type ligands. Moreover, 2-(4-bromophenyl)-1-phenyl-1 H -imidazo-[4,5- f ][1,10]phenanthroline was used as a starting point and modular platform for gradually extended diimine ligands. Suzuki cross-coupling was applied to introduce different kind of substituents in the back of this ligand. Afterwards, a combination of NMR spectroscopy, mass spectrometry, X-ray analysis, cyclic voltammetry, UV/vis and emission spectroscopy was used to investigate the structural, electrochemical and photophysical properties of these compounds. As a result, a reversible reduction, strongly increased extinction coefficients and significantly redshifted absorption maxima (20 nm) were found compared to traditional Cu(I) photosensitizers without an imidazo moiety. Moreover, these compounds show a bright emission in the solid state.
机译:捕获和储存太阳能是克服当前能源问题的有前途的选择。为了将这样的系统付诸实践,分子光敏剂应基于丰富的金属并且对可见光具有很强的吸收能力。因此,已经制备了系统性的一系列由[[P ^ P)Cu(N ^ N)] +类型(其中P ^ P = xantphos和N ^ N =不同的二亚胺配体)组成的四个新型杂配Cu(I)配合物。这些基本的特征是,这些铜光敏剂在二亚胺配体的骨架上包含一个咪唑部分,与菲咯啉类配体相比,它增加了芳族π系统。此外,将2-(4-溴苯基)-1-苯基-1 H-咪唑并-[4,5-f] [1,10]菲咯啉用作起点和逐步扩展二亚胺配体的模块平台。铃木交叉偶联用于在该配体的背面引入不同种类的取代基。之后,结合使用NMR光谱,质谱,X射线分析,循环伏安法,UV / vis和发射光谱研究了这些化合物的结构,电化学和光物理性质。结果,与没有咪唑基团部分的传统Cu(I)光敏剂相比,发现了可逆减少,消光系数大大增加以及吸收最大值显着红移(> 20 nm)。而且,这些化合物在固态下显示出明亮的发射。

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