Abstract
Perylene fluorescence was found to be quenched by Co2+ and Ni2+ ions below the phase transition in small unilamellar vesicles. Long-range Förster dipole-dipole energy transfer was found to describe the quenching of the perylene fluorescence in the case of Co2+ whereas for Ni2+ the quenching mechanism was found to be more akin to the shorter range Dexter exchange interaction. A Co2+ sensor in solution based on Förster energy transfer from perylene is proposed. © 1993, Walter de Gruyter. All rights reserved.
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CITATION STYLE
Birch, D. J. S., Suhling, K., Holmes, A. S., Salthammer, T., & Imhof, R. E. (1993). Metal ion quenching of perylene fluorescence in lipid bilayers. Pure and Applied Chemistry, 65(8), 1687–1692. https://doi.org/10.1351/pac199365081687
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