Resonance light scattering of rhodamine B

The characteristic and mechanism of resonance light scattering (RLS) of Rhodamine B (RhB) were studied. In acidic solutions with pH from -0.38 to 4.10, the intensity of RLS increases with an increase in pH and reaches a maximum at nearly neutral pH. The change in RLS intensity with the wavelength wa...

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Published inGuang pu xue yu guang pu fen xi Vol. 24; no. 12; p. 1659
Main Authors Wei, Yong-ju, Kang, Zhi-min, Liu, Cui-ge, Lan, Rui-jia, Wang, Hui-ying
Format Journal Article
LanguageChinese
Published China 01.12.2004
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Abstract The characteristic and mechanism of resonance light scattering (RLS) of Rhodamine B (RhB) were studied. In acidic solutions with pH from -0.38 to 4.10, the intensity of RLS increases with an increase in pH and reaches a maximum at nearly neutral pH. The change in RLS intensity with the wavelength was not accordant with Rayleigh scattering law. The fluorescence excitation and emission spectra of RhB overlap partly, and the RLS peak lies between the fluorescence excitation and emission peaks. In the three-dimensional fluorescence contour spectra of RhB, Rayleigh scattering line intersects fluorescence contour. In light polarization experiment, the polarization of RLS was measured to be P approximately = 0.1. All the above experimental facts reveal that the RLS of RhB is mainly resonance fluorescence. The mechanism of RLS enhancement by the increase in pH is that the formation of fluorescence species occurs in acid-base equilibrium. The RLS peak of RhB appears within the envelope of absorption, and light scatter
AbstractList The characteristic and mechanism of resonance light scattering (RLS) of Rhodamine B (RhB) were studied. In acidic solutions with pH from -0.38 to 4.10, the intensity of RLS increases with an increase in pH and reaches a maximum at nearly neutral pH. The change in RLS intensity with the wavelength was not accordant with Rayleigh scattering law. The fluorescence excitation and emission spectra of RhB overlap partly, and the RLS peak lies between the fluorescence excitation and emission peaks. In the three-dimensional fluorescence contour spectra of RhB, Rayleigh scattering line intersects fluorescence contour. In light polarization experiment, the polarization of RLS was measured to be P approximately = 0.1. All the above experimental facts reveal that the RLS of RhB is mainly resonance fluorescence. The mechanism of RLS enhancement by the increase in pH is that the formation of fluorescence species occurs in acid-base equilibrium. The RLS peak of RhB appears within the envelope of absorption, and light scatter
Author Lan, Rui-jia
Wei, Yong-ju
Wang, Hui-ying
Liu, Cui-ge
Kang, Zhi-min
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Snippet The characteristic and mechanism of resonance light scattering (RLS) of Rhodamine B (RhB) were studied. In acidic solutions with pH from -0.38 to 4.10, the...
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StartPage 1659
SubjectTerms Absorption
Coloring Agents - chemistry
Flow Injection Analysis - methods
Light
Molecular Structure
Rhodamines - chemistry
Scattering, Radiation
Spectrometry, Fluorescence - methods
Vibration
Title Resonance light scattering of rhodamine B
URI https://www.ncbi.nlm.nih.gov/pubmed/15828354
Volume 24
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