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Photophysical studies of hetero-bischelated complexes of rhodium(III) containing 2,2'-dipyridylamine

机译:含2,2'-联吡啶胺的铑(III)杂双螯合物的光物理研究

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Four mixed-ligand complexes, cis-Rh[(bipy)(HDPA)Cl-2]Cl (1), cis-[Rh(phen)(HDPA)Cl-2]Cl (2), cis-[Rh(bipy)(DPA)Cl-2](3), and cis-[Rh(phen)(DPA)Cl-2] (4) (where bipy = 2,2'-bipyridine, phen = 1,10-phenantroline, HDPA = 2,2'-dipyridylaminc, and DPA = the deprotonated form of 2,2'-dipyridylamine) have been synthesized and characterized. In slightly acidic solution and at low temperature (77 K), both complexes 1 and 2 show a broad, symmetric and structureless red emission with microsecond lifetime identified as dd* phosphorescence. In slightly basic solution, the deprotonated complexes (3 and 4) exhibit a broad and asymmetric blue emission, showing no vibrational structure with a lifetime in the order of microseconds. Emission of complex 3 reveals a blue shift of 0.81 mu m(-1) compared to the emission of complex 1 and that of complex 4 shows a blue shift of 0.77 mu m(-1) with respect to complex 2. Electrochemical data have also been obtained for the four complexes in CH3CN. There are two reduction peaks observed for both complexes 1 and 2. Each peak is followed by a one-electron reduction at the metal, with an elimination of chloride during each reduction step, which is in consistent with the dd* phosphorescence assignment for the two complexes. For complexes 3 and 4, only a one-electron reduction process occurs at the metal with an elimination of chloride. Based on the luminescence and electrochernical data, the emission of complexes 3 and 4 are assigned as pi d* phosphorescence. Results from density functional theory (DFT) calculations provide theoretical evidence in support of this pi d* assignments. (c) 2005 Elsevier B.V. All rights reserved.
机译:四种混合配体配合物,顺式-Rh [(bipy)(HDPA)Cl-2] Cl(1),顺式-[Rh(phen)(HDPA)Cl-2] Cl(2),顺式-[Rh(bipy) )(DPA)Cl-2](3)和cis- [Rh(phen)(DPA)Cl-2](4)(其中bipy = 2,2'-联吡啶,phen = 1,10-菲咯啉,HDPA合成并表征了2,2'-二吡啶基丙氨酸和DPA = 2,2'-二吡啶基胺的去质子化形式)。在弱酸性溶液中和在低温(77 K)下,配合物1和2均显示出宽泛,对称和无结构的红色发射,其微秒寿命被标识为dd *磷光。在稍微碱性的溶液中,去质子化的配合物(3和4)显示出宽泛且不对称的蓝色发射,没有显示振动结构,其寿命约为微秒。与配合物1的发射相比,配合物3的发射显示了0.81微米(-1)的蓝移,而配合物4的发射显示了相对于配合物2的0.77微米(-1)蓝移。在CH3CN中获得了四种配合物。对于复合物1和2,都观察到两个还原峰。每个峰之后在金属上进行单电子还原,在每个还原步骤中消除了氯化物,这与这两个化合物的dd *磷光分配一致复合体。对于配合物3和4,在金属上仅发生单电子还原过程,并且消除了氯化物。基于发光和电学数据,将配合物3和4的发射指定为pi d *磷光。密度泛函理论(DFT)计算的结果提供了支持该pi d *分配的理论证据。 (c)2005 Elsevier B.V.保留所有权利。

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