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Analysis of Interfacial Complex by a Time-Resolved Fluorescence Spectrometry

1 Analysis of Interfacial Complex by a Time-Resolved Fluorescence Spectrometry [Pg.54]

Rotational dynamics of a fluorescent dye adsorbed at the interface provides useful information concerning the rigidity of the microenvironment of liquid-liquid interface in terms of the interfacial viscosity. The rotational relaxation time of the rhodamine B dye was studied by the time-resolved total internal reflection fluorescent anisotropy. In-plane rotational relaxation time of octadecylrhodamine B cation was evaluated under the presence or absence of a surfactant [26]. Table 2.8 shows that by adding a surfactant, the relaxation time and the interfadal viscosity increased. Anionic surfactants SDS and HDHP (hydrogen dihexadecylphosphate) were more effective in reducing the rotational motion, because of the electrostatic interaction. HDHP with double long chains hindered the interfacial rotation more [40]. [Pg.54]




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Complex analysis

Fluorescence analysis

Fluorescence spectrometry

Fluorescent analysis (

Fluorescent complexes

Interfacial complex

Time-Resolved Analysis

Time-resolved fluorescence

Time-resolved fluorescence analyses

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