A kind of nitrite detection method based on carbon nitride quantum dots
A technology of nitrite and detection method, applied in the field of fluorescent probe detection, can solve the problems of insufficient selectivity, inability to visualize, and limited application, etc.
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Embodiment 1
[0029] An embodiment of the present invention is a method for detecting nitrite based on carbon nitride quantum dots, comprising the following steps:
[0030] 1) Preparation of green g-CNQDs by low-temperature solid-phase synthesis method: First, 0.101 g (1.68 mM) urea and 0.055 g (0.187 mM) sodium citrate were mixed in an agate mortar and ground uniformly, and then the mixed powder was transferred to Into the autoclave and heated at 180 ° C for 1 h. Finally, the solid obtained by the reaction was centrifuged with ethanol (8000 rpm, 10 min) for three times and then dispersed into water, and purified g-CNQDs were obtained after dialysis with a dialysis membrane for 24 h. The morphology of g-CNQDs was characterized by TEM and HRTEM images. like figure 1 As shown, the as-prepared g-CNQDs are spherical and have a lattice spacing of 0.213 nm.
[0031] 2) Fluorescence quenching effect of phenanthroline-ferrous ion complexes on carbon nitride quantum dots: 5mM ferrous sulfate solu...
Embodiment 2
[0041] 1) A low-temperature solid-phase synthesis method was used to prepare green fluorescent carbon nitride quantum dots. First, 0.05 g of ammonia water and 0.01 g of sodium citrate were mixed in an agate mortar and ground uniformly, and then the mixed powder was transferred to an autoclave and heated at 100 °C for 4 h. Finally, the solid obtained by the reaction was washed three times with ethanol, then centrifuged and dispersed into water, and the purified carbon nitride quantum dots were obtained after dialysis with a dialysis membrane for 20 hours.
[0042] 2) Freshly prepared 5 mM ferrous chloride and 10 mM BPS chromogenic solutions, respectively. First, according to Fe 2+ The volume ratio with the color-developing solution is 1:2, and the different amounts of Fe 2+ The solution and BPS chromogenic solution were added to 4 mL centrifuge tubes to prepare complexes of different concentrations. Then, 10 μL of carbon nitride quantum dot solution was added continuously, a...
Embodiment 3
[0047] 1) A low-temperature solid-phase synthesis method was used to prepare green fluorescent carbon nitride quantum dots. First, 1.0 g of polyethyleneimine and 0.1 g of sodium citrate were mixed in an agate mortar and ground uniformly, and then the mixed powder was transferred to an autoclave and heated at 200 °C for 0.5 h. Finally, the solid obtained by the reaction was washed three times with ethanol, then centrifuged and dispersed into water, and the purified carbon nitride quantum dots were obtained after dialysis with a dialysis membrane for 30 hours.
[0048] 2) Freshly prepared 5mM ferrous iodide solution and 10mM chromogenic solution methylene blue, respectively. First, according to Fe 2+ The volume ratio with the color-developing solution is 1:2, and the different amounts of Fe 2+ The solution and chromogenic solution were added to 4 mL centrifuge tubes to prepare complexes of different concentrations. Then, 100 μL of carbon nitride quantum dot solution was added...
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