r37980778c78--96a8ec57edaa73c217637d3ce67d7ddd

Although widely used in bioassays, the spectrofluorimetric method described here uses the antenna effect as a tool to probe the thermodynamic parameters of ligands that sensitize lanthanide luminescence. The Eu3+ coordination chemistry, solution thermodynamic stability, and photophysical properties of the spermine-based hydroxypyridonate octadentate chelator 3,4,3-LI(1,2-HOPO) are reported. The complex [EuIII(3,4,3-LI(1,2-HOPO))]− luminesces with a long lifetime (805 μs) and a quantum yield of 7.0% in aqueous solution, at pH 7.4. These remarkable optical properties were exploited to determine the high (and proton-independent) stability of the complex (log β110 = 20.2(2)) and to define the influence of the ligand scaffold on the stability and photophysical properties.

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PID https://www.doi.org/10.1021/ic9013703.s001
URL https://figshare.com/articles/journal_contribution/Using_the_Antenna_Effect_as_a_Spectroscopic_Tool_Photophysics_and_Solution_Thermodynamics_of_the_Model_Luminescent_Hydroxypyridonate_Complex_Eu_sup_III_sup_3_4_3_LI_1_2_HOPO_sup_sup_/2807863
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Collected From figshare
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Publication Date 2016-02-25
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Source https://science-innovation-policy.openaire.eu/search/publication?articleId=r37980778c78::96a8ec57edaa73c217637d3ce67d7ddd
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Last Updated 26 December 2020, 08:48 (CET)
Created 26 December 2020, 08:48 (CET)