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Energy transfer pathways in pyridylporphyrin Re(I) adducts

机译:吡啶基卟啉Re(I)加合物中的能量转移途径

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Dimeric and pentameric adducts between a meso-4' pyridylporphyrin core and either one or four rhenium(l) bipyridine tricarbonyl units, fac-[Re(CO)(3)(bipy)(4'MPyP)][CF3SO3] and fac-[{Re(CO)(3)(bipy)}(4)(4'TPyP)][CF3SO3](4)(4'MPyP = 4'-monopyridylporphyrin, 4'TPyP = 4'-tetrapyridylporphyrin), respectively, were synthesized and their photophysical behaviors were investigated by emission and absorption time resolved experiments. The adducts exhibit distinctive supramolecular features, different from those of the molecular components. Upon excitation of the core, the typical porphyrin fluorescence is quenched. This effect is attributed to enhanced intersystem crossing in the porphyrin unit, owing to the heavy atom effect provided by the attached rhenium unit(s). Following excitation of rhenium fragments the typical rhenium MLCT emission is not observed while partial sensitization of the porphyrin fluorescence occurs, indicating that fast intercomponent energy and/or electron transfer processes take place in competition with the intersystem crossing in the rhenium unit. (c) 2006 Elsevier B.V. All rights reserved.
机译:meso-4'吡啶基卟啉核心与一个或四个rh(l)联吡啶三羰基单元,fac- [Re(CO)(3)(bipy)(4'MPyP)] [CF3SO3]和fac- [{Re(CO)(3)(bipy)}(4)(4'TPyP)] [CF3SO3](4)(4'MPyP = 4'-单吡啶基卟啉,4'TPyP = 4'-四吡啶基卟啉)合成了它们,并通过发射和吸收时间分辨实验研究了它们的光物理行为。加合物表现出不同于分子组分的独特的超分子特征。激发核后,典型的卟啉荧光被猝灭。由于连接的rh单元提供的重原子效应,该效应归因于卟啉单元中增强的系统间交叉。激发fragments片段后,未观察到典型的rh MLCT发射,而卟啉荧光发生部分敏化,表明与component单元中的系统间交叉竞争发生了快速的组分间能量和/或电子转移过程。 (c)2006 Elsevier B.V.保留所有权利。

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