Preparation method of immobilized beta-cyclodextrin derivative type chiral stationary phase
A technology of chiral stationary phase and cyclodextrin, which is applied in the field of high performance liquid chromatography, can solve the problem of reducing chiral separation ability of bonded cyclodextrin chiral stationary phase, increasing achiral recognition, and low spatial regularity, etc. problems, to achieve the effect of effective preparation method, simple post-treatment purification, and fast reaction rate
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Embodiment 1
[0024]Add 0.9g of completely dried β-cyclodextrin into a reactor containing 15ml of anhydrous pyridine, raise the temperature to 80°C under a nitrogen atmosphere, and add 0.6ml of propyl triethoxyisocyanate when all the solids are dissolved base silane, kept at a constant temperature of 80°C, and stirred for 12 hours. Then add 1.2ml of phenylisocyanate, keep the temperature at 80°C, stir for 24h, and stop heating. The cooled pyridine solution containing the product was added dropwise into a vigorously stirred 300 ml aqueous methanol solution (methanol / water=4 / 1, v / v), at which time a large amount of white precipitates were produced. After continuing to stir vigorously for 15 minutes, stop stirring, and after standing still for 15 minutes, pour out the supernatant. The suspension containing a large amount of solids in the lower part was centrifuged at high speed to separate the solid product. After centrifugation, 30 ml of aqueous methanol solution (methanol / water=4 / 1, v / v) w...
Embodiment 2
[0029] The reaction steps and conditions are the same as those in Example 1, the substrate used is 4-methylphenylisocyanate, and its consumption is 1.4ml. Finally, a 4-methylphenylcarbamate β-cyclodextrin chiral column was obtained.
Embodiment 3
[0031] The reaction steps and conditions are the same as in Example 1, the substrate used is 4-chlorophenylisocyanate, and its consumption is 1.70g. Finally, a 4-chlorophenylcarbamate β-cyclodextrin chiral column was obtained.
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