Rojas-Montoya Sandra M, Vonlanthen Mireille, Porcu Pasquale, Flores-Rojas Gabriel, Ruiu Andrea, Morales-Morales David, Rivera Ernesto
Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Circuito Exterior Ciudad Universitaria, C.P. 04510, Ciudad de México, Mexico.
Instituto de Química, Universidad Nacional Autónoma de México, Circuito Exterior Ciudad Universitaria, C.P. 04510, Ciudad de México, Mexico.
Dalton Trans. 2019 Jul 16;48(28):10435-10447. doi: 10.1039/c9dt00855a.
A novel series of dendronized porphyrins bearing pyrene units in the periphery (Porph-O-Gn) and their metal complexes (M-[Porph-O-Gn]) are reported. The pyrene-containing Frechet-type dendrons up to the first generation were synthesized and further reacted with 5-phenol-10,15,20-triphenylporphyrin via an esterification reaction to afford the desired pyrene-labeled dendronized porphyrins. Later, these compounds were used as ligands to produce the corresponding complexes of Zn2+, Cu2+, Mg2+ and Mn3+. With the compounds in hand, the optical and photophysical properties of the dendritic metalloporphyrins were studied by absorption and fluorescence spectroscopy. The quantum yields, Förster radius and efficiency of energy transfer were determined and discussed as a function of the structure and the donor-acceptor distances, finding an efficient energy transfer from the pyrene moiety to the metallated porphyrin core in each case.
报道了一系列新型的在周边带有芘单元的树枝状卟啉(Porph-O-Gn)及其金属配合物(M-[Porph-O-Gn])。合成了直至第一代的含芘的弗雷谢型树枝状分子,并通过酯化反应使其与5-苯酚-10,15,20-三苯基卟啉进一步反应,得到所需的芘标记树枝状卟啉。随后,这些化合物被用作配体以制备Zn2+、Cu2+、Mg2+和Mn3+的相应配合物。有了这些化合物后,通过吸收光谱和荧光光谱研究了树枝状金属卟啉的光学和光物理性质。确定并讨论了量子产率、福斯特半径和能量转移效率与结构及供体-受体距离的关系,发现在每种情况下芘部分到金属化卟啉核心都有高效的能量转移。