A kind of dual-emission fluorescent molecularly imprinted polymer nanoparticle and its preparation method and application
A dual emission fluorescence, molecular imprinting technology, applied in luminescent materials, nanotechnology, nanotechnology and other directions, can solve the problems of complex treatment, dopamine human harm, expensive chromatography instruments, etc., to improve selectivity and accurate detection results.
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Embodiment 1
[0035] CdTe QDs were prepared by a hydrothermal method. First prepare the precursor: prepare a clean centrifuge tube, mix 51 mg Te powder, 100 mg NaBH 4 and 1.5 mL of double-distilled water were added to the centrifuge tube in turn, and a needle was inserted into the cover of the centrifuge tube to discharge the excess hydrogen in the reaction, and then the centrifuge tube was placed in an ultrasonic machine for 1.0 h of ultrasonic reaction to obtain the precursor of CdTe QDs NaHTe. 0.3651 g CdCl 2 2.5H 2 O and 0.1777 mL of thioglycolic acid solution were made into a mixed solution, diluted with 100 mL of distilled water, and the pH of the mixed solution was adjusted to 11.2 with a NaOH solution with a concentration of 1 mol / L, nitrogen was introduced and stirred, and the precursor was mixed half an hour later NaHTe was quickly added to the mixed solution, and the reaction was refluxed in an oil bath at 140°C. Nitrogen gas was kept flowing slowly throughout the reaction, an...
Embodiment 2
[0039] First prepare the precursor: prepare a clean centrifuge tube, mix 40 mg Te powder, 80 mg NaBH 4 and 1.2 mL of double-distilled water were added to the centrifuge tube in turn, and a needle was inserted into the cover of the centrifuge tube to discharge the excess hydrogen in the reaction, and then the centrifuge tube was placed in an ultrasonic machine for 1.0 h of ultrasonic reaction to obtain the precursor of CdTe QDs NaHTe. 0.2 gCdCl 2 2.5H 2 O and 0.05mL mercaptoacetic acid solution were made into a mixed solution, diluted with 50 mL of distilled water, and the pH of the mixed solution was adjusted to 9.5 with a NaOH solution with a concentration of 1 mol / L, and argon gas was introduced and stirred, and the precursor was mixed half an hour later. Bulk NaHTe was quickly added to the mixed solution, and the reaction was refluxed in an oil bath at 140 ° C. The whole reaction was kept slowly flowing with argon gas. Red fluorescent CdTe QDs were obtained after 7 days o...
Embodiment 3
[0043] CdTe QDs were prepared by a hydrothermal method. First prepare the precursor: prepare a clean centrifuge tube, mix 60mg Te powder, 120 mg NaBH 4 and 1.8 mL of double-distilled water were added to the centrifuge tube in turn, and a needle was inserted into the cover of the centrifuge tube to discharge the excess hydrogen gas of the reaction, and then the centrifuge tube was placed in an ultrasonic machine for ultrasonic reaction for 1.0 h to obtain the precursor of CdTe QDs NaHTe. 0.5g CdCl 2 2.5H 2 O and 0.25mL thioglycolic acid solution were made into a mixed solution, added 500mL of distilled water to dilute, and the pH of the mixed solution was adjusted to 12 with a NaOH solution with a concentration of 1 mol / L, nitrogen gas was introduced and stirred, and after half an hour, the precursor NaHTe Quickly added to the mixed solution, reflux reaction in an oil bath at 140 °C, and nitrogen gas was kept flowing slowly throughout the reaction, and red fluorescent CdTe Q...
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