A kind of synthetic method of aminoethanethiol
A technology of aminoethanethiol and aminoethanethiol, applied in the synthesis field of aminoethanethiol, can solve problems such as easy self-polymerization, and achieve the effects of promoting ring opening and improving product selectivity
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Embodiment 1
[0045]Add 20 g of zirconium oxynitrate dihydrate and 100 mL of absolute ethanol into a round-bottomed flask and mix evenly, then add 20 g of ethylene glycol and stir at room temperature for 30 min. mL of ammonium molybdate solution 6.89ml, then heated to 80℃ and stirred for 30min, then added 10% dilute ammonia water dropwise, during the addition process, the solution would gradually become turbid, when the pH value of the reaction system reached 9, stop adding ammonia water dropwise , continue stirring for 24h, filter to obtain stable molybdenum-doped nano-zirconia sol, washed and dried, and calcined in a 400°C muffle furnace for 8h to obtain molybdenum-doped nano-zirconia sol.
[0046] The molybdenum-doped nanocarrier and 250 mL of water were added to a round-bottomed flask, stirred at room temperature for 30 min, then heated to 50 °C, and continued to be stirred for 30 min, and 58.97 mL of 0.25 mol / L precursor nickel nitrate was added to the reaction system, Continue to stir...
Embodiment 2
[0050] Add 20g of tetrabutyl titanate and 100mL of absolute ethanol into a round-bottomed flask and mix well, then add 50mL of deionized water and stir at room temperature for 45min, then heat up to 70°C and stir for 30min, then add HNO dropwise 3 , during the addition process, the solution will gradually become turbid, when HNO 3 When the molar ratio to tetrabutyl titanate is 4, stop adding nitric acid; after stirring for 2 hours, add 1.53 ml of 0.25 g / mL ammonium molybdate solution to the generated colloidal solution according to the doping amount of molybdenum element, and continue stirring 24h, filtered to obtain stable molybdenum-doped nano-TiO 2 The sol was washed and dried, and then calcined in a muffle furnace at 400°C for 7 hours to obtain molybdenum-doped nano-titania.
[0051] The molybdenum-doped nanocarriers and 250 mL of water were added to a round-bottomed flask, stirred at room temperature for 30 min, then heated to 50 °C, and continued to be stirred for 30 mi...
Embodiment 3
[0054] Add 20 g of zirconium oxynitrate dihydrate and 100 mL of absolute ethanol into a round-bottomed flask and mix evenly, then add 20 g of ethylene glycol and stir at room temperature for 60 min. mL of ammonium molybdate solution 7.65ml, then heated to 80°C and stirred for 30min, then 10% dilute ammonia water was added dropwise. During the addition process, the solution would gradually become turbid. When the pH value of the reaction system reached 8, the dropwise addition of ammonia water was stopped. , continue stirring for 24h, filter to obtain stable molybdenum-doped nano-zirconia sol, washed and dried, and calcined in a 400°C muffle furnace for 6h to obtain molybdenum-doped nano-zirconia sol.
[0055] The molybdenum-doped nanocarrier and 250 mL of water were added to a round-bottomed flask, stirred at room temperature for 30 min, then heated to 50 °C, and stirred for 30 min. According to the catalyst loading, 0.25 mol / L of the precursor was added to the reaction system....
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