荧光各向异性
发色团
极化(电化学)
荧光
激发
材料科学
分子物理学
各向异性
化学物理
共轭体系
聚合物
分子
偏振显微镜
光学
光化学
化学
显微镜
物理
物理化学
有机化学
复合材料
量子力学
作者
Oleg Mirzov,Robbert Bloem,P.R. Hania,Daniel Thomsson,Hongzhen Lin,Ivan G. Scheblykin
出处
期刊:Small
[Wiley]
日期:2009-04-20
卷期号:5 (16): 1877-1888
被引量:73
标识
DOI:10.1002/smll.200801168
摘要
Abstract A novel technique, two‐dimensional (2D) polarization single‐molecule imaging, is presented. It is based on measurements and analysis of fluorescence intensity as a function of excitation and emission polarization angles. The technique allows recording of full information on the steady‐state polarization properties of fluorescent objects. It is particularly suitable for application to single multichromophoric systems (molecules or nanoparticles) with energy transfer (ET) between different chromophores (e.g., single fluorescent π‐conjugated polymer chains). The 2D polarization data simultaneously provide information on the conformation of the system and the efficiency of its internal excitation ET. The technique is used to characterize single chains and different kinds of chain aggregates of different conjugated polymers at different temperatures. The 2D polarization measurements reveal a dramatic difference in ET taking place in these systems. Clear temperature dependence of ET is observed for individual aggregates as well as for their statistical ensembles. Also, a dependence on solvent and aggregate size is shown. Additionally, extensive “traditional one‐dimensional” polarization results on the polarization anisotropy of fluorescence excitation and emission are presented. These results and findings are discussed in relation to internal organization of the nano‐objects under study.
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