Solvent polarity studies of highly fluorescent laser dye ADS740WS and its fluorescence quenching with silver nanoparticles

Author:

Tangod V.B.1,Raikar Prasad2,Mastiholi B.M.1,Raikar U.S.1

Affiliation:

1. Department of Physics, Karnatak University, Dharwad-580 003, Karnataka, India.

2. BMS College of Engineering, Bangalore-560 019, India.

Abstract

Determination of ground state and excited state dipole moments of a highly fluorescent laser dye molecule ADS740WS and comparison of excited state dipole moment by Lippert, Bakhashiev, Kawski–Chamma–Viallet, McRae, Suppan, and solvent polarity methods. Kamlet–Abboud–Taft and Katritzky multilinear analysis for characterizing the solvent contribution into spectral features of the dye has also been studied. Correlation analysis of spectroscopic data with multiple polarity parameters was carried out by multiple linear regression analysis. Optical absorption and fluorescence of ADS740WS in alcohol and other solvents with attachment of silver nanoparticles (AgNPs) shows quenching of absorption and fluorescence intensities. This is due to size, shape, and coupling between the AgNPs and the dye, and energy transfer between the dye and the AgNPs. Fluorescence quenching of ADS740WS leads to many applications notably for advancement in biomolecular labeling and fluorescence patterning and chemotherapy in cancer treatment.

Publisher

Canadian Science Publishing

Subject

General Physics and Astronomy

Reference39 articles.

1. Ground and excited state dipole moments of coumarin 337 laser dye

2. Fluorescence quenching using plasmonic gold nanoparticles

3. V.B. Tangod, B.M. Mastiholi, M.G. Kotresh, P.B. Ganjihal, P. Raikar, and U.S. Raikar. Proceedings of International Conference on Optical Engineering. 2012. 10.1109/ICOE.2012.6409600.

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