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The phosphorescence and excitation-wavelength dependent fluorescence kinetics of large-scale graphene oxide nanosheets

机译:大规模氧化石墨烯纳米片的磷光和激发波长相关的荧光动力学

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In this study, phosphorescence emission and a strong excitation-wavelength dependent fluorescence has been found in large-scale graphene oxide (GO) nanosheets. GO was covalently functionalized with triphenylamine (GO-CONH-TPA) in order to enhance the GO fluorescence quantum yield to 18%. The intersystem crossing (ISC) dynamics were studied using a femtosecond transient absorption technique, which appeared in the same timescale as the fluorescence dynamics of GO-CONH-TPA in both a polar solvent and solid film. Therefore, both, the solvation (several hundreds of picoseconds) and the intersystem crossing (ISC) gave rise to the strong excitation-wavelength dependent fluorescence. Moreover, the phosphorescence emission of the GO-CONH-TPA film at room temperature has been described for the first time in this report, and the lifetime of phosphorescence was found to be 6.95 μs. The fluorescence kinetics of GO-CONH-TPA were attributed to the aromatic hydrocarbon-carboxylic domain structure of GO.
机译:在这项研究中,在大规模氧化石墨烯(GO)纳米片中发现了磷光发射和依赖于激发波长的强荧光。 GO用三苯胺(GO-CONH-TPA)共价官能化,以将GO荧光量子产率提高到18%。使用飞秒瞬态吸收技术研究了系统间穿越(ISC)动力学,该技术以与在极性溶剂和固体膜中GO-CONH-TPA的荧光动力学相同的时间尺度出现。因此,溶剂化(几百皮秒)和系统间穿越(ISC)都产生了强烈的依赖于激发波长的荧光。此外,在本报告中首次描述了GO-CONH-TPA膜在室温下的磷光发射,发现磷光的寿命为6.95μs。 GO-CONH-TPA的荧光动力学归因于GO的芳烃-羧基结构域。

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