Precision Analysis of Lanthanides by Fluorescence Spectroscopy Part one : Flourimetric Determination of Rare Earths by Ternary Complexes of TTA, n-Octanol and Triton X-100
Gi Won, Gwang Won Park, Yeong Gu Ha, Ha Seok Kim
Abstract
Gi Won, Gwang Won Park, Yeong Gu Ha, Ha Seok Kim
Abstract
The fluorescence intensities of europium and samarium can be greatly enhanced in the presence 2-thenoyltrifluoroacetone(TTA), n-octanol and Triton X-100 in aqueous solution of pH 7. It was also found that the fluorescence intensity can be greatly increased by the addition of excess of . The excitation and emission wavelengths of europium and samarium were 345 nm, 380 nm and 617 nm, 567 nm, respectively. The fluorescence intensity was a linear function of the concentration of europium and samarium in the range TEX>$1{\times}10^{-7}∼1{\tiems}10^{-9}\;M,\;1{\tiems}10^{-5}∼1{\times}10^{-7}\;M$, respectively, and the detection limits were 1 for europium and for samarium and the luminescence mechanism of the system is discussed.
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The fluorescence intensities of europium and samarium can be greatly enhanced in the presence 2-thenoyltrifluoroacetone(TTA), n-octanol and Triton X-100 in aqueous solution of pH 7. It was also found that the fluorescence intensity can be greatly increased by the addition of excess of . The excitation and emission wavelengths of europium and samarium were 345 nm, 380 nm and 617 nm, 567 nm, respectively. The fluorescence intensity was a linear function of the concentration of europium and samarium in the range TEX>$1{\times}10^{-7}∼1{\tiems}10^{-9}\;M,\;1{\tiems}10^{-5}∼1{\times}10^{-7}\;M$, respectively, and the detection limits were 1 for europium and for samarium and the luminescence mechanism of the system is discussed.
Key concepts: Europium, Samarium, Thenoyltrifluoroacetone, Fluorescence, Lanthanide, Chemistry, Ternary operation, Analytical Chemistry (journal)