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氢键作用下苯酚-吡咯烷[60]富勒烯的光电性质

Optical and electrochemical properties of hydrogen-bonded phenol-pyrrolidino[60]fullerenes.

机构信息

Center for Bioenergy and Photosynthesis, Department of Chemistry and Biochemistry, Arizona State University, Tempe, Arizona 85287-1604, USA.

出版信息

Photochem Photobiol Sci. 2012 Jun;11(6):1018-25. doi: 10.1039/c2pp05351a. Epub 2012 Feb 23.

DOI:10.1039/c2pp05351a
PMID:22358261
Abstract

We report the photophysical and electrochemical properties of phenol-pyrrolidino[60]fullerenes 1 and 2, in which the phenol hydroxyl group is ortho and para to the pyrrolidino group, respectively, as well as those of a phenyl-pyrrolidino[60]fullerene model compound, 3. For the ortho analog 1, the presence of an intramolecular hydrogen bond is supported by (1)H NMR and FTIR characterization. The redox potential of the phenoxyl radical-phenol couple in this architecture is 240 mV lower than that observed in the associated para compound 2. Further, the C(60) excited-state lifetime of the hydrogen-bonded compound 1 in benzonitrile is 260 ps, while the corresponding lifetime for 2 is identical to that of the model compound 3 at 1.34 ns. Addition of excess organic acid to a benzonitrile solution of 1 gives rise to a new species, 4, with an excited-state lifetime of 1.40 ns. In nonpolar aprotic solvents such as toluene, all three compounds have a C(60) excited-state lifetime of ∼1 ns. These results suggest that the presence of an intramolecular H-bond in 1 poises the potential of phenoxyl radical-phenol redox couple at a value that it is thermodynamically capable of reducing the photoexcited fullerene. This is not the case for the para analog 2 nor is it the case for the protonated species 4. This work illustrates that in addition to being used as light activated electron acceptors, pyrrolidino fullerenes are also capable of acting as built-in proton-accepting units that influence the potential of an attached donor when organized in an appropriate molecular design.

摘要

我们报告了苯酚-吡咯烷[60]富勒烯 1 和 2 的光物理和电化学性质,其中苯酚羟基分别处于吡咯烷的邻位和对位,以及苯并吡咯烷[60]富勒烯模型化合物 3 的性质。对于邻位类似物 1,(1)H NMR 和 FTIR 特征表明存在分子内氢键。该结构中酚氧自由基-苯酚偶联的还原电位比相应的对位化合物 2 低 240 mV。此外,在苯腈中,氢键化合物 1 的 C(60)激发态寿命为 260 ps,而 2 的对应寿命与模型化合物 3 的 1.34 ns 相同。向 1 的苯腈溶液中加入过量有机酸会产生新物种 4,其激发态寿命为 1.40 ns。在非极性非质子溶剂(如甲苯)中,这三种化合物的 C(60)激发态寿命约为 1 ns。这些结果表明,1 中存在分子内 H 键使酚氧自由基-苯酚氧化还原偶对的电势处于热力学上能够还原光激发富勒烯的位置。对于对位类似物 2 并非如此,对于质子化的物种 4 也并非如此。这项工作表明,除了用作光激活电子受体之外,吡咯烷富勒烯还能够作为内置的质子接受单元,在适当的分子设计中组织时影响附着的供体的电势。

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