Preparation method of a fluorescent polarized fluorescent magnetic molecular imprinting sensor
A technology of magnetic molecular imprinting and fluorescence polarization, which is applied in the fields of fluorescence/phosphorescence, chemical instruments and methods, and material analysis through optical means, which can solve the problem of only detecting analytes with fluorescent properties and reduce the cost of preparation , high detection sensitivity and wide application range
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preparation example Construction
[0030] Step one, Fe 3 o 4 Preparation of nanoparticles
[0031] 1.72gFeCl 2 • 4H 2 O and 4.72gFeCl 3 •6H 2 O and 80mL of deionized water were added to the flask, and nitrogen was continuously introduced into the flask and placed in a DF-101S collector type constant temperature heating magnetic stirrer and stirred vigorously to dissolve it; when the temperature rose to 80°C, 10ml of ammonia The aqueous solution was slowly dripped into the flask and reacted for 30 minutes; the product was separated under the action of an external magnetic field; washed 6 times with deionized water to remove unreacted substances, dried and stored;
[0032] Step two, Fe 3 o 4 @SiO 2 preparation of
[0033] 300mg of magnetic nanoparticles, 50mL of isopropanol and 4mL of ultrapure water were sonicated for 15-20mim, and then 5mL of ammonia water and 2mL of tetraethylorthosilicate were added in sequence; the reaction was continuously stirred at room temperature for 12h; the product was collec...
Embodiment 1
[0042] A method for preparing a fluorescent polarization fluorescent magnetic molecular imprinting sensor, the specific steps are:
[0043] Step one, Fe 3 o 4 Preparation of nanoparticles
[0044] 1.72gFeCl 2 • 4H 2 O and 4.72gFeCl 3 •6H 2 O and 80mL of deionized water were added to the flask, and nitrogen was continuously introduced into the flask and placed in a DF-101S collector type constant temperature heating magnetic stirrer and stirred vigorously to dissolve it; when the temperature rose to 80°C, 10ml of ammonia The aqueous solution was slowly dripped into the flask and reacted for 30 minutes; the product was separated under the action of an external magnetic field; washed 6 times with deionized water to remove unreacted substances, dried and stored;
[0045] Step two, Fe 3 o 4 @SiO 2 preparation of
[0046] 300mg of magnetic nanoparticles, 50mL of isopropanol and 4mL of ultrapure water were sonicated for 20mim, and then 5mL of ammonia and 2mL of tetraethylor...
Embodiment 2
[0054] A method for preparing a fluorescent polarization fluorescent magnetic molecular imprinting sensor, the specific steps are:
[0055] Step one, Fe 3 o 4 Preparation of nanoparticles
[0056] 1.72gFeCl 2 • 4H 2 O and 4.72gFeCl 3 •6H 2 O and 80mL of deionized water were added to the flask, and nitrogen was continuously introduced into the flask and placed in a DF-101S collector type constant temperature heating magnetic stirrer and stirred vigorously to dissolve it; when the temperature rose to 80°C, 10ml of ammonia The aqueous solution was slowly dripped into the flask and reacted for 30 minutes; the product was separated under the action of an external magnetic field; washed 6 times with deionized water to remove unreacted substances, dried and stored;
[0057] Step two, Fe 3 o 4 @SiO 2 preparation of
[0058] 300mg of magnetic nanoparticles, 50mL of isopropanol and 4mL of ultrapure water were sonicated for 15mim, and then 5mL of ammonia and 2mL of tetraethyl o...
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