• Title/Summary/Keyword: europium ion sensor

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The Fluorescent 7-Aminodipyrido[3,2-a:2',3'-c] phenazine(7-amino-dppz) Functionalized as an Europium Ion ($Eu^{3+}$) Sensor

  • Choi, Chang-Shik;Lee, Ki-Hwan
    • Rapid Communication in Photoscience
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    • v.1 no.2
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    • pp.31-33
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    • 2012
  • The Fluorescent 7-aminodipyrido[3,2-a:2',3'-c]phenazine (7-amino-dppz, 1) is functionalized as an europium ion ($Eu^{3+}$) sensor, which showed the effective emission quenching when europium cation is chelated to the bpy site of 1 compound. The complexation ratio indicated that the 1 compound forms a 1 : 1 complex with $Eu^{3+}$.

Determination of Eu(III) by Fluorescence Spectrometry using Fiber Optic Sensor (광섬유센서를 이용한 Eu(III)의 형광분광법적 정량)

  • Lee, Sang Hak;Lee, Yoon Hee;Yang, Seung Tae;Choi, Sang Seob
    • Analytical Science and Technology
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    • v.11 no.5
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    • pp.409-412
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    • 1998
  • The analytical method to determine europium(III) ion in aqueous solution by fluorescence spectroscopy based upon the conformational change of calmodulin in the presence of the analyte has been studied. The fiber optic chemical sensor used in this study was constructed by entrapping a fluorescein-labeled calmodulin solution, EGTA, buffer solution at the common end of a bifurcated fiber optic bundle by means of a dialysis membrane. The calibration curve to determine europium(III) ion was obtained when concentration of calmodulin, concentration of EGTA, Tris-HCl buffer solution, pH, excitation wavelength and fluorescence wavelength were $5.0{\times}10^{-5}M$, 0.50 mM, 5.0 mM, 7.0, 495 nm and 520 nm, respectively. The detection limit was $1.0{\times}10^{-11}M$ and the working range of the calibration curve for the sensor was $1.0{\times}10^{-11}M{\sim}1.0{\times}10^{-9}M$. The response time was 15 minutes. For the determination of europium(III) ion by the present method, $Na^+$ and $K^+$ ions did not interfere but $Ca^{2+}$ ion seriously interfered.

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Radiation Resistance of BGO:Eu Scintillator (BGO:Eu 섬광체의 방사선 저항)

  • Kim, Jong-Il;Jeong, Jung-Hyun;Doh, Sih-Hong;Hwang, Hae-Sun;Kim, Sung-Chuel;Kim, Jung-Hwan
    • Journal of Sensor Science and Technology
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    • v.6 no.1
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    • pp.16-23
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    • 1997
  • Bismuth germanate crystals well known as scintillator were grown by Czochralski method. In order to understand a mechanism of radiation resistance in Eu-doped BGO, we measured radiation induced-absorption spectra, excitation spectra, emission spectra and luminescence lifetimes of BGO crystals. We found that the charge transfer state of $Eu^{3+}$ ion is to play a key role to enhance the radiation resistance in BGO crystal. The $^{5}D_{0}$ emission of $Eu^{3+}$ ions that is not suitable for the radiation detectors due to a long decay time was found to be increased with increasing europium concentration. In the BGO crystal doped with 0.1 mole%, the density of radiation induced color centers was reduced about twenty times and the light output of $^{5}D_{0}$ was negligible by comparing to that of BGO.

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