Preparation method and application of maltol magnetic molecularly imprinted solid-phase extraction material with core-shell microsphere structure
A technology of magnetic molecular imprinting and solid-phase extraction materials, applied in chemical instruments and methods, other chemical processes, alkali metal compounds, etc., can solve problems such as difficult elution, long equilibration time, and deep embedding, and avoid modification. Process, low cost, uniform thickness effect
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Embodiment 1
[0035] In this example, the preparation method of the maltol magnetic molecularly imprinted solid-phase extraction material with core-shell microsphere structure is as follows:
[0036] 1. Magnetic Fe 3 o 4 -Synthesis of COOH nanospheres
[0037] Accurately weigh 3.0g FeCl 3 ·6H 2 O. Put 0.83g sodium citrate dihydrate and 100mL ethylene glycol in a 250mL beaker, mechanically stir at 30°C until completely dissolved, add 4.80g anhydrous sodium acetate, 1500r min -1 Stir for 30 minutes, transfer the above mixed solution to the reaction kettle, heat at 200°C for 10h, and cool to room temperature naturally. Fe 3 o 4 -COOH nanospheres.
[0038] 2. Synthesis of pre-polymerized products
[0039] Dissolve 0.1mmol 3-hydroxy-2,6-bis(hydroxymethyl)-pyran-4-one and 1mL APTES in 10mL methanol, let stand at room temperature for 2h, and record it as polymerization solution a;
[0040] 3. Synthesis of Magnetic Virtual Template Molecularly Imprinted Microspheres
[0041] 200 mg of the m...
Embodiment 2
[0045] In this example, the preparation method of the maltol magnetic molecularly imprinted solid-phase extraction material with core-shell microsphere structure is as follows:
[0046] 1. Magnetic Fe 3 o 4 -Synthesis of COOH nanospheres
[0047] Accurately weigh 3.0g FeCl 3 ·6H 2 O. Put 0.83g sodium citrate dihydrate and 100mL ethylene glycol in a 250mL beaker, mechanically stir at 30°C until completely dissolved, add 4.80g anhydrous sodium acetate, 1500r min -1 Stir for 30 minutes, transfer the above mixed solution to the reaction kettle, heat at 200°C for 10h, and cool to room temperature naturally. Fe 3 o 4 -COOH nanospheres.
[0048] 2. Synthesis of pre-polymerized products
[0049] Dissolve 0.1mmol 3-hydroxy-2,6-bis(hydroxymethyl)-pyran-4-one and 1mL APTES in 10mL methanol, let stand at room temperature for 3h, and record it as polymerization solution a;
[0050] 3. Synthesis of Magnetic Virtual Template Molecularly Imprinted Microspheres
[0051] 200 mg of the...
Embodiment 3
[0055] In this example, the preparation method of the maltol magnetic molecularly imprinted solid-phase extraction material with core-shell microsphere structure is as follows:
[0056] 1. Magnetic Fe 3 o 4 -Synthesis of COOH nanospheres
[0057] Accurately weigh 3.0g FeCl 3 ·6H 2 O. Put 0.83g sodium citrate dihydrate and 100mL ethylene glycol in a 250mL beaker, mechanically stir at 30°C until completely dissolved, add 4.80g anhydrous sodium acetate, 1500r min -1 Stir for 30 minutes, transfer the above mixed solution to the reaction kettle, heat at 200°C for 10h, and cool to room temperature naturally. Fe 3 o 4 -COOH nanospheres.
[0058] 2. Synthesis of pre-polymerized products
[0059] Dissolve 0.1mmol 3-hydroxy-2,6-bis(hydroxymethyl)-pyran-4-one and 1mL APTES in 10mL methanol, let stand at room temperature for 3h, and record it as polymerization solution a;
[0060] 3. Synthesis of Magnetic Virtual Template Molecularly Imprinted Microspheres
[0061] 200 mg of the...
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