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利用皮秒时间分辨条纹相机技术检测了3种不同染料在立方体和T-颗粒溴化银上吸附后形成聚集体的荧光光谱, 分析了不同染料在不同浓度下对染料聚集体到溴化银导带的超快电子转移过程的影响, 进而分析其对增感效率的影响关系, 并探讨了增感过程的微观机理. 实验结果表明, 荧光衰减的动力学曲线与双指数函数拟合得相当好, 存在一快一慢衰减成分, 快衰减成分占拟合较大比例, 认为其源于与荧光衰减相竞争的从激发态染料聚集体到AgBr导带的电子转移. 光致电子转移的速率及增感效率随着染料相对浓度的变化而改变, 不同染料增感的乳剂, 其变化趋势不同. 相似文献
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本文利用皮秒时间分辨条纹相机技术检测了3种染料在立方颗粒溴化银上吸附后形成聚集体的荧光光谱,分析了3种染料在不同染料浓度下对染料聚集体到溴化银导带的超快电子转移过程的影响,进而分析其对增感效率的影响关系,并探讨了增感过程的微观机理.实验结果表明,荧光衰减的动力学曲线与一个双指数函数拟合得相当好,存在一快一慢两个衰减成分,快衰减成分占拟合较大比例,表明其源于与荧光衰减相竞争的从激发态染料聚集体到AgBr导带的电子转移.光致电子转移的速率及增感效率随着染料相对浓度的增加表现出一定的变化趋势,染料浓度增加,增感效率减小. 相似文献
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Kinetics study of ultrafast electron transfer from sensitized dyes to silver halide microcrystals 总被引:1,自引:0,他引:1 下载免费PDF全文
Spectral sensitization micromechanism of cyanine dyes J-aggregate adsorbed
on the tabular and cubic AgBr microcrystals with different dye
concentrations
is studied by using picosecond time-resolved fluorescence spectroscopy, and
the dependences of electron transfer and spectral efficiency sensitization
on different conditions are analysed in detail. With the steady
spectroscopy, the wavelengths of absorption and fluorescence of J-aggregate
adsorbed on AgBr microcrystals are found to shift to red relative to dye
monomer. The spectrum of fluorescence has a red shift relative to the
absorption peak. With the time-resolved fluorescence spectroscopy, the
fluorescence decay curves of cyanine dyes J-aggregate adsorbed on the
tabular and cubic AgBr grains are found to be fitted well by a
double-exponential decay function. The fitting curves consist of a fast and
a slow component. Because of the large amplitude of the fast component, this
fast decay should be attributable mainly to the electron transfer from
J-aggregate of dye to a conduction band of AgBr. 相似文献
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