Method for preparing monodisperse mesoporous bioactive glass microspheres by template method
A bioactive glass, monodisperse technology, applied in glass molding, glass manufacturing equipment, manufacturing tools, etc., can solve the problems that are not suitable for the preparation of MBGs microspheres, and achieve comprehensive excellent comprehensive performance, high thermal stability and comprehensive performance excellent effect
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Embodiment 1
[0040] 1. Preparation of 75S25C mesoporous bioactive glass microspheres (M75S25C) with different particle sizes:
[0041] (1) Add 1.8g of non-polar triblock copolymer PluronicF127 (hereinafter referred to as F127) into a mixture of 0.04g of nitric acid solution (2mol / L), 0.1g of deionized water and 4g of absolute ethanol, and stir to obtain Clear mixed solution.
[0042] (2) Add 0.59 g of calcium nitrate tetrahydrate to the above mixed solution, and stir until completely dissolved.
[0043] (3) 1.56g of tetraethyl orthosilicate was added, and stirring was continued for 2h.
[0044] 1) Mix mineral acid with deionized water and absolute ethanol, add surfactant, and stir to obtain a clear mixed solution;
[0045] 2) Add alkali metal or alkaline earth metal source, calcium source and iron source to the above mixture, stir until completely dissolved, then add silicon source and phosphorus source, and continue stirring;
[0046] The silicon source is tetraethyl orthosilicate (TEO...
Embodiment 2
[0055] 1. Preparation of 70S7F magnetic mesoporous bioactive glass microspheres (MM70S7F) with different particle sizes:
[0056] (1) Add 1.8g F127 to the mixed solution of 0.04g nitric acid solution (2mol / L) and 4g absolute ethanol, and stir until clear.
[0057] (2) Add 0.59g calcium nitrate tetrahydrate and 0.3g ferric nitrate nonahydrate, and stir until completely dissolved.
[0058] (3) 1.56g of tetraethyl orthosilicate was added, and stirring was continued for 2h.
[0059] (4) 4 copies of the above solution were prepared in parallel.
[0060] (5) Immerse in three-dimensional ordered macroporous polystyrene / carbon templates with pore diameters of 470 nm, 390 nm, 250 nm, and 180 nm, respectively, and soak overnight.
[0061] (6) Place in an oven at 60°C to gel the sol for 3 days until it is completely dry.
[0062] (7) Remove the excess gel on the surface of the template, calcined at 600 °C for 3 hours in a high temperature furnace, grind and ultrasonically disperse to ...
Embodiment example 3
[0088] Preparation and in vitro degradation experiments of 70S30C mesoporous bioactive glass microspheres (M70S30C) with different particle sizes:
[0089] Preparation of M70S30C:
[0090] (1) Add 1.8g of F127 into the mixture of 0.04g of nitric acid solution (2mol / L), 0.1g of deionized water and 4g of absolute ethanol, and stir until clear.
[0091] (2) Add 0.71g calcium nitrate tetrahydrate and stir until completely dissolved.
[0092] (3) Add 1.45g tetraethyl orthosilicate and continue stirring for 2h.
[0093] (4) Four copies of the above solution were prepared in parallel.
[0094] (5) Immerse three-dimensionally ordered macroporous polystyrene / carbon templates with pore diameters of 470nm, 390nm, 250nm, and 180nm respectively, and soak overnight.
[0095] (6) Place in an oven at 60°C, and gel the sol for 3 days until it is completely dry.
[0096] (7) Remove excess gel on the surface of the template, calcinate in a high-temperature furnace at 600°C for 3 hours, grind...
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