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A selective optical chemical sensor for the determination of iodine based on fluorescence quenching of LiTOE
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作者 LONG Li-ping ZHONG Tong-sheng WANG Jiao-liang YIN Zhi-fang LI Wang-ying LEI Cun-xi 《Journal of Environmental Science and Engineering》 2008年第1期72-77,共6页
An optical chemical sensor has been developed for the determination of iodine based on the reversible fluorescence quenching of 2, 2, 7, 7, 12, 12, 17, 17-octamethyl-21, 22, 23, 24-tetraoxaquaterene-Li (LiTOE) imm... An optical chemical sensor has been developed for the determination of iodine based on the reversible fluorescence quenching of 2, 2, 7, 7, 12, 12, 17, 17-octamethyl-21, 22, 23, 24-tetraoxaquaterene-Li (LiTOE) immobilized in a plasticized poly(vinyl chloride) (PVC) membrane. The optimum membrane of the sensor consists of 100 mg of PVC, 200 mg of bis (2-ethytbexyl) sebacate (BOS) and 3.0 mg of LiTOE. The maximum response of the optode membrane for iodine is obtained in Tris-HCl buffer solutlon (pH 8.0). With the optimum conditions described, the proposed sensor responds linearly in the measuring range of 3.90×10^-2 to 3.90×10^-4 mol/L, and has a detection limit of 6.0×10^-8 mol/L. The response time of the sensor is less than I rain. In addition to high reproducibility and reversibility of the fluorescence signal, the sensor also exhibits good selectivity. It is not interfered by some common anions and cations. It is applied for the determination of iodine in table salt samples. The results agree with those obtained by another method. 展开更多
关键词 a selective optical chemical sensor IODINE fluorescence quenching 2 2 7 7 12 12 17 17-Octamethyl-21 22 23 24-tetraoxaquaterene-Li (LiTOE) optode membrane
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