Multilevel core-shell structure magnetic nano gold catalyst and preparation method thereof
A magnetic nano, core-shell structure technology, applied in the preparation of carbon-based compounds, chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, etc., can solve the problems of complex preparation methods of magnetic nanocomposites, and achieve Excellent catalytic activity and selectivity for alcohol oxidation, strong supersuperparamagnetic properties
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Embodiment 1
[0020] (1) Preparation of magnetic substances
[0021] Weigh 3.25g (0.012mol) ferric chloride hexahydrate (FeCl 3 ·6H 2 O) and 8.64g (0.063mol) sodium acetate trihydrate (CH 3 COONa·3H 2 O) dissolved in 80ml of ethylene glycol, transferred to a 100ml reaction kettle, crystallized at 200°C for 8 hours, naturally cooled to room temperature, magnetically separated by NdFeB permanent magnets, washed 3 times with ethanol and deionized water, respectively, During the washing process, NdFeB permanent magnets are still used for magnetic separation, and dried at 60 ° C for 24 hours to obtain a black powder, which is recorded as Fe 3 o 4 .
[0022] (2) Preparation of core-shell magnetic carrier
[0023] Weigh 1.0g Fe 3 o 4 The solid was dispersed in 100ml methanol aqueous solution (V 甲醇 :V 水 =1), ultrasonically dispersed for 5 minutes, then transferred to a round-bottomed flask, and stirred at room temperature.
[0024] Prepare NaOH(0.10mol / L) / Na 2 CO 3 (0.05mol / L) mixed al...
Embodiment 2
[0030] (1) Preparation of magnetic substances
[0031] Weigh 3.25g (0.012mol) ferric chloride hexahydrate (FeCl 3 ·6H 2 O) and 8.64g (0.063mol) sodium acetate trihydrate (CH 3 COONa·3H 2 O) dissolved in 80ml of ethylene glycol, transferred to a 100ml reaction kettle, crystallized at 200°C for 8 hours, naturally cooled to room temperature, magnetically separated by NdFeB permanent magnets, washed 4 times with ethanol and deionized water, respectively, During the washing process, NdFeB permanent magnets are still used for magnetic separation, and dried at 80 ° C for 18 hours to obtain a black powder, which is recorded as Fe 3 o 4 .
[0032] (2) Preparation of core-shell magnetic carrier
[0033] Weigh 2.0g Fe 3 o 4 The solid was dispersed in 80ml methanol aqueous solution (V 甲醇 :V 水 =0), ultrasonically dispersed for 10 minutes, then transferred to a round-bottomed flask, and stirred at room temperature.
[0034] Prepare NaOH(0.20mol / L) / Na 2 CO 3 (0.10mol / L) mixed al...
Embodiment 3
[0040] (1) Preparation of magnetic substances
[0041] Weigh 3.25g (0.012mol) ferric chloride hexahydrate (FeCl 3 ·6H 2 O) and 8.64g (0.063mol) sodium acetate trihydrate (CH 3 COONa·3H 2 O) dissolved in 80ml of ethylene glycol, transferred to a 100ml reaction kettle, crystallized at 200°C for 8 hours, naturally cooled to room temperature, magnetically separated by NdFeB permanent magnets, washed 5 times with ethanol and deionized water respectively, During the washing process, NdFeB permanent magnets are still used for magnetic separation, and dried at 100 ° C for 12 hours to obtain a black powder, which is recorded as Fe 3 o 4 .
[0042] (2) Preparation of core-shell magnetic carrier
[0043] Weigh 3.0g Fe 3 o 4 The solid was dispersed in 100ml methanol aqueous solution (V 甲醇 :V 水 =0.5), ultrasonically dispersed for 15 minutes, then transferred to a round-bottomed flask, and stirred at room temperature.
[0044] Prepare NaOH(0.15mol / L) / Na 2 CO 3 (0.10mol / L) mixed...
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