Stimulus-response type polypyrrole nanotube targeting drug carrier and preparation method
A polypyrrole nanotube and stimuli-responsive technology, applied in the field of targeted drug carrier nanomaterials, can solve the problems of nanogel drug leakage, drug leakage, and uneven particle size
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Embodiment 1
[0060] (1) In 10ml of pyrrole monomer and 17.29g of sodium hydroxide aqueous solution, 0.48g of tetrabutylammonium bromide, 16ml of 1,3-dibromopropane, react for 12h, after the reaction is complete, suction filter, add a small amount of dichloromethane to dissolve, Wash with saturated brine, spin to dry the solvent, and distill under reduced pressure to obtain 1-(3-bromopropyl)pyrrole.
[0061] (2) Preparation of template
[0062] The titanium sheet is mechanically polished, deoiled and degreased, the titanium sheet is used as the anode, the platinum sheet is used as the cathode, 0.18gNH 4 F, 3ml water, 0.3mlH 2 SO 4 Ethylene glycol electrolyte, temperature 0°C, 180V constant voltage DC power supply for anodizing for 8 minutes, and the prepared titanium dioxide nanotubes were rinsed with distilled water to clean the surface electrolyte for later use. figure 2 and image 3 Its scanning electron microscope image.
[0063] The titanium sheet is mechanically polished, deoile...
Embodiment 2
[0083] (1) Pyrrole modification
[0084] Slowly add 10ml of pyrrole monomer dropwise into an aqueous solution containing 35ml of 50% sodium hydroxide, 4.8g of tetrabutylammonium bisulfate, and 110ml of 1,2-dichloroethane, heat and reflux for 24 hours, dilute with water after the reaction, dilute Extracted with methyl chloride, combined with dichloromethane, washed with water three times, dried over anhydrous sodium sulfate, and spin-dried the solvent to obtain 1-(2-chloroethyl)pyrrole. Other steps are the same as in Example 1.
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