4.7 Article

Temperature Switch of LMCT Role: From Quenching to Sensitization of Europium Emission in a ZnII-EuIII Binuclear Complex

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INORGANIC CHEMISTRY
卷 49, 期 5, 页码 2310-2315

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AMER CHEMICAL SOC
DOI: 10.1021/ic902169s

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  1. CNCSIS [IDEI 506/2009]

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The synthesis, structural investigation, and photophysical properties of a new heterobinuclear complex, [Zn(H2O)(valpn)Eu(NO3)(3)], are reported [H(2)valpn = 1,3-propanediylbis(2-iminomethylene-6-metoxy-phenol)]. In the absence of the antenna-type sensitization of europium emission at room temperature, the strongest metal-centered emission was obtained following excitation into the F-7(0)-D-5(2) transition at 535 nm. In contrast, at 80 K, the strongest emission of europium was obtained by exciting into the maximum of a high-intensity, low-lying ligand-to-metal charge-transfer band (LMCT) located at similar to 425 nm. The overall temperature-induced changes of the photophysical properties of europium were assigned to the relative location of the LMCT and (3)pi pi* ligand states to the europium excited levels. The results may explain the lack of the antenna effects reported for some of the europium complexes with this type of ligand.

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