Core-shell rhodamine 6G molecularly imprinted solid phase extraction magnetic material, and preparation method and application thereof
A technology of molecular imprinting and magnetic materials, applied in the direction of analyzing materials, material separation, chemical instruments and methods, etc., can solve problems such as endangering human health, and achieve rapid detection and analysis, high sensitivity, and the effect of eliminating matrix interference
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Embodiment 1
[0039] 1. Preparation of core-shell rhodamine 6G molecularly imprinted magnetic material for solid phase extraction
[0040] (1) Preparation of Fe by chemical co-precipitation method 3 o 4 magnetic nanoparticles
[0041] 5.3g (0.02mol) FeCl 3 ·6H 2 O, 2.0g (0.01mol) FeCl 2 4H 2 O was placed in a three-necked flask filled with 150mL deionized water, ultrasonically dissolved, stirring was started, and N 2 Remove oxygen, heat to 80°C, add 25mL of concentrated ammonia water, react for 6h, separate the product from the solution with a strong magnet, discard the waste liquid; put the product into 100mL of 0.2mol / L sodium citrate aqueous solution, and ultrasonicate for 5min Disperse evenly, then separate the product with a strong magnet, and wash Fe with deionized water 3 o 4 to neutrality, then wash with 20-50mL of absolute ethanol, and dry at 60°C to obtain black Fe 3 o 4 magnetic nanoparticles;
[0042] (2) Surface aminated magnetic Fe 3 o 4 Preparation of nanoparticl...
Embodiment 2
[0054] 1. Preparation of core-shell rhodamine 6G molecularly imprinted magnetic material for solid phase extraction
[0055] (1) Preparation of Fe by chemical co-precipitation method 3 o 4 magnetic nanoparticles
[0056] Same as Example 1
[0057] (2) Surface aminated magnetic Fe 3 o 4 Preparation of nanoparticles
[0058] 1.2g Fe 3 o 4 Put the magnetic nanoparticles into a three-neck flask containing 250 mL of ethanol-water (1:1, V / V) solution, start stirring, add 1.5 mL of 3-aminopropyltriethoxysilane, and adjust the pH to 4.0 with glacial acetic acid , through N 2 Remove oxygen, then raise the temperature to 60°C, and react for 3 hours; the product is separated by a strong magnet, washed with deionized water until neutral, and dried at 60°C to obtain the surface aminated magnetic Fe 3 o 4 Nanoparticles;
[0059] (3) Preparation of molecularly imprinted polymer magnetic particles containing rhodamine 6G by surface imprinting method
[0060] 1.0g surface aminated ...
Embodiment 3
[0069] 1. Preparation of core-shell rhodamine 6G molecularly imprinted magnetic material for solid phase extraction
[0070] (1) Preparation of Fe by chemical co-precipitation method 3 o 4 magnetic nanoparticles
[0071] Same as Example 1
[0072] (2) Surface aminated magnetic Fe 3 o 4 Preparation of nanoparticles
[0073] 2.0g Fe 3 o 4 Put the magnetic nanoparticles into a three-necked flask containing 350 mL of ethanol-water (1:1, V / V) solution, start stirring, add 2.5 mL of 3-aminopropyltriethoxysilane, and adjust the pH to 4.0 with glacial acetic acid , through N 2 Remove oxygen, then raise the temperature to 60°C, and react for 3 hours; the product is separated by a strong magnet, washed with deionized water until neutral, and dried at 60°C to obtain the surface aminated magnetic Fe 3 o 4 Nanoparticles;
[0074] (3) Preparation of molecularly imprinted polymer magnetic particles containing rhodamine 6G by surface imprinting method
[0075] 2.0g surface aminate...
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