Fluorescence detection method of inorganic selenium
A fluorescence detection, inorganic selenium technology, applied in fluorescence/phosphorescence, measurement device, material analysis by optical means, etc., can solve the problems of high equipment cost and complicated operation, and achieve high sensitivity, less spectral interference, and accurate detection. Effect
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Embodiment 1
[0029] Embodiment 1: The fluorescent detection method of inorganic selenium provided in this embodiment uses nitrogen-boron-doped carbon quantum dots as fluorescent probes to detect SeO by fluorescence spectroscopy 3 2- content, including the following steps:
[0030] 1) Dissolve powdery nitrogen-boron co-doped carbon quantum dots (N,B-CQDs) in ultrapure water, and prepare a 0.1mg / mL D solution to test its fluorescence intensity, denoted as F 0 ;
[0031] 2) Selenite ion (SeO 3 2- ) solution is mixed with D solution respectively, obtain mixed solution respectively, carry out fluorescence test to mixed solution, obtain the fluorescence intensity value of each mixed solution respectively, denote as F;
[0032] 3) with SeO 3 2- Selenite ion concentration is the abscissa, fluorescence growth rate (F / F 0-1) is the ordinate, and linear fitting is carried out to obtain the regression equation y=kx+b, where y is the fluorescence growth rate, and x is SeO 3 2- The concentratio...
Embodiment 4
[0050] Embodiment 4: the fluorescent detection method of the inorganic selenium that this embodiment provides, it is basically the same as embodiment 1, difference is: 1) the carbon quantum dot (N, B-CQDs) that powdery nitrogen boron is co-doped Dissolved in ultrapure water, configured as 0.15mg / mL D solution, tested its fluorescence intensity, recorded as F 0 ;
[0051] 2) Selenite ion (SeO 3 2- ) solutions were mixed with D solutions to obtain mixed solutions respectively, and the mixed solutions were tested for fluorescence, and the fluorescence intensity values of each mixed solutions were respectively obtained, denoted as F.
Embodiment 5
[0052] Embodiment 5: the fluorescence detection method of the inorganic selenium that this embodiment provides, it is basically the same as embodiment 1, difference is: 1) the carbon quantum dot (N, B-CQDs) that powdery nitrogen boron is co-doped Dissolved in ultrapure water, configured as 0.2mg / mL D solution, tested its fluorescence intensity, denoted as F 0 ;
[0053] 2) Selenite ion (SeO 3 2- ) solutions were mixed with D solutions to obtain mixed solutions respectively, and the mixed solutions were tested for fluorescence, and the fluorescence intensity values of each mixed solutions were respectively obtained, denoted as F.
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Abstract
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Application Information
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