首页> 外文会议>International Symposium on Advanced Optical Manufacturing and Testing Technologies; 20051102-05; Xian(CN) >Electron transfer dynamics of dye-55026 J-aggregate to AgBr grains studied by ultrafast fluorescence spectroscopy
【24h】

Electron transfer dynamics of dye-55026 J-aggregate to AgBr grains studied by ultrafast fluorescence spectroscopy

机译:超快速荧光光谱研究染料55026 J聚集体向AgBr晶粒的电子转移动力学

获取原文

摘要

Direct detection of the dynamics of photo-induced electrons in AgBr photographic system sensitized by dye-55026 was performed using picosecond time-resolved fluorescence spectroscopy. The dependence of the electron transfer rate on different conditions and microcosmic mechanism of electron transfer were analyzed. The experiment setup in our work was a system of high-speed streak photography (Streak Cameras) with a time-resolution of 5 ps. With stead spectroscopy, the peak of absorption and fluorescence of J-aggregation on AgBr grains both have a red shift contrast to monomer. On the same time the absorption spectrum band of J-aggregation becomes narrow. The fluorescence decay curves of J-aggregation on both the cubic and tabular AgBr grains (T-grains) were gained with different dye concentrations. These curves are fitted well by a sum of double exponential functions, which includes a fast and a slow component. Because of large amplitudes (68-99% for T-grains and 68-80% for cubic grains) of the fast decay (2.4-12.1ps for T-grains and 4.1-5.8ps for cubic grains) and the estimated quantum yield of the electron injection, this fast decay should be mainly attributable to the electron transfer from excited J-aggregation to conduction band of AgBr. At low concentration ( < 4.51mmol/molAg), the fluorescence decay lifetime for T-grains is longer than that for cubic grains. As the increase of the concentration, it will become more rapidly for T-grains than that for cubic grains.
机译:使用皮秒时间分辨荧光光谱法对由染料55026敏化的AgBr照相系统中的光诱导电子的动力学进行直接检测。分析了电子转移速率对不同条件的依赖性以及电子转移的微观机理。我们工作中的实验设置是一个高速条纹摄影系统(Streak Cameras),其时间分辨率为5 ps。使用稳态光谱法,AgBr晶粒上J聚集的吸收峰和荧光峰均与单体形成红移对比。同时,J聚集的吸收光谱带变窄。在不同的染料浓度下,获得了立方和板状AgBr晶粒(T晶粒)上J聚集的荧光衰减曲线。这些曲线通过双重指数函数的总和很好地拟合,其中包括快速分量和慢速分量。由于快速衰减的幅度较大(T晶粒为68-99%,立方晶粒为68-80%)(快速衰减)(T晶粒为2.4-12.1ps,立方晶粒为4.1-5.8ps),且估计的量子产率为通过电子注入,这种快速衰减应该主要归因于电子从激发的J聚集体转移到AgBr的导带。在低浓度(<4.51mmol / molAg)下,T粒的荧光衰减寿命比立方粒更长。随着浓度的增加,T粒比立方粒变得更快。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号