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Fullerenes (C_60) versus heteroazafullerenes (C_59N); a photophysical comparison of their monoadducts and hexaadducts

机译:富勒烯(C_60)与杂氮富勒烯(C_59N);单加合物和六加合物的光物理比较

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摘要

The singlet and triplet excited state properties of a series of fullerene derivatives (C_60) are compared to those of the corresponding heteroazafullerenes derivatives (C_59N) by employing a variety of steady-state and time-resolved photophysical assay. The most far-reaching results infer that the C_59N (2, 5) analogous of C_60 (1, 4) are characterized by shorter singlet lifetimes (1.01/0.57 ns versus 1.80/1.75 ns) and weaker fluorescence quantum yields (1.6 * 10~(-4)/2.1 * 10~(-4) versus 6.0 * 10~(-4)/1.09 * 10~(-3)). This general conclusion applies for the monoadduct series (1, 2) and also for the highly functionalized hexaadducts (4, 5). Similarly, higher singlet energies (1.89 eV (4) versus 1.79 eV (1)) come together with higher fluorescence quantum yields for the hexaadducts than for the monoadducts.
机译:通过采用各种稳态和时间分辨的光物理分析方法,将一系列富勒烯衍生物(C_60)的单重态和三重态激发态性能与相应的杂氮富勒烯衍生物(C_59N)进行比较。最深远的结果表明,类似于C_60(1、4)的C_59N(2、5)具有较短的单线态寿命(1.01 / 0.57 ns对1.80 / 1.75 ns)和较弱的荧光量子产率(1.6 * 10〜 (-4)/2.1 * 10〜(-4)与6.0 * 10〜(-4)/1.09 * 10〜(-3))。该一般结论适用于一加合物系列(1、2),也适用于高度官能化的六加合物(4、5)。同样,六加合物的单线态能量更高(1.89 eV(4)对1.79 eV(1)),并且荧光量子产率比单加合物更高。

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