A kind of probe compound and its detection method for detecting fluoride ion
A technology of compound and fluoride ion, which is applied in the field of anion fluorescence analysis and detection, can solve the problems of narrow response range, low sensitivity, and the quantum efficiency is easily affected by the environment, so as to achieve the effect of improving sensitivity and eliminating system errors
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Embodiment 1
[0027] Dissolve the probe compound N-3-hydroxyl-4-2'-benzothiazolebenzene-3,5-dibenzyloxybenzamide in DMSO to make a concentration of 1×10 -3 mol / L solution A, take 30 μL solution A and dissolve it in the sample cell containing 3mL acetonitrile, mix the solution evenly to obtain the concentration of the probe compound as 1×10 -5mol / L mixture B. Prepare acetonitrile solutions containing different anions, namely tetrabutylammonium fluoride acetonitrile solution, tetrabutylammonium dihydrogenphosphate acetonitrile solution, tetrabutylammonium hydrogensulfate acetonitrile solution, tetrabutylammonium acetate acetonitrile solution and tetrabutylammonium chloride The acetonitrile solution of ammonium fluoride, add above-mentioned five kinds of solutions respectively in mixed solution B, make the concentration of tetrabutylammonium fluoride after adding be 200 times of probe compound, the concentration of other four kinds of tetrabutylammonium fluoride is probe compound 1000 times o...
Embodiment 2
[0029] Dissolve the probe compound N-3-hydroxyl-4-2'-benzothiazolebenzene-3,5-dibenzyloxybenzamide in DMSO to make a concentration of 1×10 -3 mol / L solution A, take 30 μL solution A and dissolve it in the sample cell containing 3mL acetonitrile, mix the solution evenly to obtain the concentration of the probe compound as 1×10 -5 mol / L mixed solution B, gradually dropwise add the acetonitrile solution of tetrabutylammonium fluoride to the mixed solution B, so that the concentration of tetrabutylammonium fluoride after adding is respectively 2, 5, 10, 50 of the probe compound , 80, 100, 150, 200, 230 times, measure respectively the fluorescence spectrum (such as figure 2 ). Along with the increase of fluoride ion concentration, the fluorescent peak intensity at 500nm on the fluorescence spectrum weakens gradually, and a new peak appears at 450nm, and the fluorescent peak intensity increases gradually, with the ratio of 450nm and 500nm fluorescent intensity (I 450 / I 500 ) is...
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