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Femtosecond study of electron transfer dynamics of anionic-cationic cyanine dye J-aggregates to AgBrI microcrystals

机译:飞秒研究阴离子阳离子花青染料J聚集体向AgBrI微晶的电子转移动力学

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Using femtosecond time-resolved upconversion fluorescence spectroscopy technology, the fluorescence decay properties of J-aggregates of anio nic-cationic cyanine dye , anionic cyanine dye and cationic cyanine dye adsorbed on surfaces of the cubic AgBrI grains are investigated.The kinetics of the electron transfer and the spectral sensitization property are analyzed in detail. The experiment setup in our work is the fluorescence upconversion(also called fluorescence frequency generation)spectrometer. The time-resolution reaches about 140 fs. Anionic-cationic cyanine dye studied in our experiment is new-type cyanine dye ,which formed by anionic cyanine dye reacting with cationic cyanine dye. By contrary of the sensitization performances of several cyanine dyes, It is found that the sensitization performance of cubic AgBrI sensitized by anionic-cationic dye is marked higher than those of anionic cyanine dye, cationic cyanine dye and the mixture of anionic cyanine dye and cationic cyanine dye . The fluorescence decay curves of cyanine dyes J-aggregates obtained by femtosecond fluorescence upconversion spectrometer are analyzed as a sum of double exponentials , and the fitting curves consist of a fast and a slow component. Because of the large amplitude , this fast decay should be mainly attributable to the electron transfer from dye J-aggregates to conduction band of AgBrI. The electron transfer velocity of anionic-cationic cyanine dye J-aggregates is larger than those of anionic cyanine dye , cationic cyanine dye and the mixture of anionic cyanine dye and cationic cyanine dye, which is consistent with the results of the sensitization performance and the photoelectron lifetime . Dyel has higher sensitizing efficiency than other cyanine dyes on the cubic AgBrI grains.
机译:利用飞秒时间分辨上转换荧光光谱技术,研究了吸附在立方AgBrI晶粒表面的阴离子型阳离子花青染料,阴离子型花青染料和阳离子型花青染料的J聚集体的荧光衰减特性。并对光谱的增感特性进行了详细的分析。我们工作中的实验装置是荧光上转换(也称为荧光频率生成)光谱仪。时间分辨率达到约140 fs。本实验研究的阴离子-阳离子花青染料是新型的花菁染料,它是由阴离子花青染料与阳离子花青染料反应而形成的。与几种花青染料的敏化性能相反,发现由阴离子阳离子染料敏化的立方AgBrI的敏化性能明显高于阴离子花青染料,阳离子花青染料以及阴离子花青染料和阳离子花青的混合物。染料。通过飞秒荧光上转换光谱仪获得的花菁染料J聚集体的荧光衰减曲线以双指数之和的形式进行分析,并且拟合曲线由快和慢两个分量组成。由于振幅大,这种快速衰减应主要归因于电子从染料J聚集体转移到AgBrI的导带。阴离子型阳离子花青染料J聚集体的电子传递速度大于阴离子型花青染料,阳离子型花青染料以及阴离子型花青染料和阳离子型花青染料的混合物的电子传递速度,这与敏化性能和光电子的结果一致。一生 。在立方AgBrI晶粒上,Dyel的敏化效率高于其他花青染料。

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