Preparation method of supported electro-catalytic nitrogen reduction catalyst MoS2-Fe3O4
A mos2-fe3o4, supported catalyst technology, applied in the direction of electrodes, electrolytic processes, electrolytic components, etc., can solve the problems of expensive prices and resources, impossible industrial production, scarcity, etc.
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Embodiment 1
[0013] Step 1: Weigh 2.000 g of polyethylene glycol and 7.200 g of sodium acetate and fully disperse them into 80 mL of ethylene glycol. Add 2.700 g of ferric chloride hexahydrate into the mixed solution and disperse evenly. After the above solutions are fully mixed Transfer to a polytetrafluoroethylene-lined reactor and react at 200 °C for 8 h. After the reaction, cool to room temperature and wash the obtained product 5 times to obtain Fe with pores. 3 o 4 nanospheres;
[0014] The second step: take 0.1 g of the above-mentioned prepared Fe with holes 3 o 4 Disperse the nanospheres into 80 mL deionized water, stir for 60 minutes, add 0.760 g sodium molybdate dihydrate and 0.600 g thiourea into the uniformly dispersed solution, mix well and transfer to a polytetrafluoroethylene-lined reaction kettle , reacted at 200 °C for 15 h, after the reaction was completed, cooled to room temperature, and washed the obtained product 5 times to obtain the MoS 2 Fe loading on nanoflowers...
Embodiment 2
[0022] Step 1: Weigh 2.050 g of polyethylene glycol and 7.250 g of sodium acetate and fully disperse them into 80 mL of ethylene glycol, add 2.740 g of ferric chloride hexahydrate into the mixed solution and disperse evenly, and mix the above solutions thoroughly Transfer to a polytetrafluoroethylene-lined reactor and react at 200 °C for 8 h. After the reaction, cool to room temperature and wash the obtained product 5 times to obtain Fe with pores. 3 o 4 nanospheres;
[0023] The second step: take 0.12 g of the above-mentioned prepared Fe with holes 3 o 4 Nanospheres were dispersed into 80 mL of deionized water, stirred for 60 minutes, 0.750 g of sodium molybdate dihydrate and 0.620 g of thiourea were added to the uniformly dispersed solution, mixed thoroughly and transferred to a polytetrafluoroethylene-lined reaction kettle , reacted at 200 °C for 15 h, after the reaction was completed, cooled to room temperature, and washed the obtained product 5 times to obtain the MoS ...
Embodiment 3
[0031] Step 1: Weigh 2.010 g of polyethylene glycol and 7.200 g of sodium acetate and fully disperse them into 80 mL of ethylene glycol, add 2.690 g of ferric chloride hexahydrate into the mixed solution and disperse evenly, and mix the above solutions thoroughly Transfer to a polytetrafluoroethylene-lined reactor and react at 200 °C for 8 h. After the reaction, cool to room temperature and wash the obtained product 5 times to obtain Fe with pores. 3 o 4 nanospheres;
[0032] The second step: take 0.102 g of the above-mentioned prepared Fe with holes 3 o 4 Nanospheres were dispersed into 80 mL of deionized water, stirred for 60 minutes, 0.768 g of sodium molybdate dihydrate and 0.610 g of thiourea were added to the uniformly dispersed solution, mixed thoroughly and transferred to a polytetrafluoroethylene-lined reaction kettle , reacted at 200 °C for 15 h, after the reaction was completed, cooled to room temperature, and washed the obtained product 5 times to obtain the MoS...
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