Amido modified magnetic nano-particle and method for preparing immune magnetic nano-separation agent
A magnetic nanoparticle and magnetic nanoparticle technology, applied in the field of preparation of immunomagnetic nano-separation reagents, can solve the problems of unsuitability for industrial production and low yield, and achieve improved synthesis efficiency, good dispersibility, and good repeatability Effect
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Embodiment 1
[0035] 1) Prepare 1250ml0.5M NaOH and 125ml1M FeCl respectively 3 , 125ml0.5M FeCl 2 and 125ml0.4M HCl solution, NaOH solution was placed in a three-necked flask, under N 2 Heating the constant temperature water bath to 60°C under protective conditions, the prepared FeCl 3 , FeCl 2 After mixing with HCl solution, it was quickly added to a three-necked flask, stirred at 50 rpm for 15 min, and then cooled to room temperature. Washed 5 times with deionized water and methanol successively, the resulting product Fe 3 o 4 Magnetic nanoparticles were dispersed in methanol. The TEM image of the obtained product is shown in Figure 1(a); and the magnetic properties of the product are detected, as shown in the hysteresis curve in Figure 2.
[0036] 2) The product prepared in the previous step (Fe dispersed in methanol 3 o 4 Magnetic nanoparticles, Fe 3 o 4 Magnetic nanoparticles (20g) were placed in a flask, a total of 1000ml of toluene and methanol were added at a volume ratio...
Embodiment 2
[0041] 1) Prepare 1250ml0.5M KOH and 125ml1M Fe respectively 2 (SO 4 ) 3 , 125ml0.5M FeSO 4 and 125ml of 0.4M HCl solution, the KOH solution was placed in a three-necked flask, heated to 70°C at a constant temperature under the protection of argon (Ar), and the prepared Fe 2 (SO 4 ) 3 , FeSO 4 After mixing with HCl solution, it was quickly added into a three-necked flask, stirred vigorously at 100 rpm for 20 min, and then cooled to room temperature. Washed several times with deionized water and ethanol successively, the obtained product Fe 3 o 4 Magnetic nanoparticles are dispersed in ethanol.
[0042] 2) Put 20 g of magnetic nanoparticles prepared in the previous step in a flask, add 1050 ml of toluene and ethanol at a volume ratio of 1:15, add 10 ml of sodium silicate, and raise the temperature of the flask to 100 ° C, and pass in Ar for protection to Stir vigorously at 100 rpm, reflux for 24 hours, and wash with toluene several times to obtain Fe coated with silica...
Embodiment 3
[0047] 1) Prepare 1250ml0.5M KOH and 125ml1M Fe respectively 2 (SO 4 ) 3 , 125ml0.5M FeSO 4 and 125ml0.4M HCl solution, put the KOH solution in a three-necked flask, under N 2 Heating at constant temperature to 90°C under protective conditions, the prepared Fe 2 (SO 4 ) 3 , FeSO 4 After mixing with HCl solution, it was quickly added into a three-necked flask, stirred vigorously at 80 rpm for 30 min, and then cooled to room temperature. Wash several times with deionized water and methanol successively, and the obtained product Fe 3 o 4 Magnetic nanoparticles are dispersed in methanol.
[0048] 2) Put 20g of the magnetic nanoparticles prepared in the previous step in a flask, add 1000ml of toluene and methanol at a volume ratio of 1:30, add 200ml of tetraethyl orthosilicate, and raise the temperature of the flask to 120°C, and pass in N2 to carry out Protected, stirred vigorously at 80rpm, refluxed for 30h, washed several times with toluene to obtain Fe coated with sil...
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