Ordered organic-inorganic hybrid mesoporous silica and loaded gold nanomaterials, and preparing method thereof
A mesoporous silica, organic technology, applied in the field of preparation of gold nanoparticles and its preparation, can solve the problems of uneven distribution of organic functional groups, difficulty in controlling the size distribution of gold particles, etc., and achieve environmental protection and good catalytic applications Foreground, reaction process simple effect
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Embodiment 1
[0038] 1. Dissolve 5ml of 6-mercapto-1-hexanol in 20ml of absolute ethanol with stirring at room temperature, then add 13.8g of iodine, and stir for 24 hours. After the solvent was removed by rotary evaporation, 30 ml of tert-butyl methyl ether was added, and then the iodine was extracted with 10 mg / ml sodium bisulfite solution, and the solvent was removed by rotary evaporation. Add 5 ml of thionyl chloride to the residue, stir at room temperature for 24 hours, and remove volatile substances by rotary evaporation. Finally, 5 ml of 3-ethoxysilylpropyl-4,5-dihydroimidazolium ionic liquid was added to the residue under N 2 Heating to reflux under protection for 24 hours, removing volatile matter in a vacuum to obtain a viscous liquid, that is, an imidazole-based ionic liquid organofunctional siloxane precursor containing thioether.
[0039] 2. Keep the temperature at 35°C, dissolve 4.0g P123 in 150ml 1.6M (M is mol / l) hydrochloric acid solution to make the pH of the solution rea...
Embodiment 2
[0042] 1. Dissolve 5ml of 9-mercapto-1-nonanol in 20ml of absolute ethanol with stirring at room temperature, then add 13.8g of iodine, and stir for 24 hours. After the solvent was removed by rotary evaporation, 30 ml of tert-butyl methyl ether was added, and then iodine was extracted with 15 mg / ml sodium bisulfite solution, and the solvent was removed by rotary evaporation. Add 5 ml of thionyl chloride to the residue, stir at room temperature for 24 hours, and remove volatile substances by rotary evaporation. Finally, 5 ml of 3-ethoxysilylpropyl-4,5-dihydroimidazolium ionic liquid was added to the residue under N 2 Heating to reflux under protection for 24 hours, removing volatile matter in a vacuum to obtain a viscous liquid, that is, an imidazole-based ionic liquid organofunctional siloxane precursor containing thioether.
[0043] 2. With the temperature kept at 35°C, dissolve 4.0g P123 in 150ml 1.6M hydrochloric acid solution to make the pH of the solution reach 2.0, and ...
Embodiment 3
[0046] 1. Dissolve 5ml of 3-mercapto-1-propanol in 20ml of absolute ethanol with stirring at room temperature, then add 13.8g of iodine, and stir for 24 hours. After the solvent was removed by rotary evaporation, 30 ml of tert-butyl methyl ether was added, and then iodine was extracted with 15 mg / ml sodium bisulfite solution, and the solvent was removed by rotary evaporation. Add 5 ml of thionyl chloride to the residue, stir at room temperature for 24 hours, and remove volatile substances by rotary evaporation. Finally, 5 ml of 3-ethoxysilylpropyl-4,5-dihydroimidazolium ionic liquid was added to the residue under N 2 Heating to reflux under protection for 24 hours, removing volatile matter in a vacuum to obtain a viscous liquid, that is, an imidazole-based ionic liquid organofunctional siloxane precursor containing thioether.
[0047] 2. With the temperature kept at 35°C, dissolve 4.0g P123 in 150ml 1.6M hydrochloric acid solution to make the pH of the solution reach 2.0, and...
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