Catalyst and preparation method thereof, and process for producing hydrogen through electro-catalytic decomposition of water
A catalyst and process technology, applied in chemical instruments and methods, physical/chemical process catalysts, electrolysis processes, etc., can solve the problems of catalysts that are difficult to work stably for a long time, transition metal catalysts are easy to oxidize, lack of catalysts for synthesis methods, etc., and achieve large-scale Industrial application potential, good and stable work, high electrocatalytic activity and stability effects
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Embodiment 1
[0052] Cut the foamed copper into small pieces of 1×2×2cm, ultrasonically degrease and remove oil in acetone for 10 minutes, rinse with ultra-pure water for 3 times, place in 1mol / L hydrochloric acid for 10 minutes to remove surface oxides, and then wash with ultra-pure water for 3 times, to obtain pretreated foamed copper;
[0053] Weigh 0.33g sodium formate and add to 1.5ml ultrapure water to obtain sodium formate solution; weigh 0.05g NiCl2 ·6H 2 O was added into 13mlDMF for ultrasonic dissolution to obtain a nickel chloride solution;
[0054] Mix sodium formate solution and nickel chloride solution with ultrasonic vibration and add them into a 25ml reaction kettle, add pretreated foam copper, seal, place in a temperature-programmed oven with a heating rate of 3°C / min, and react at 160°C for 18 hours. Cool to room temperature, take out the copper foam, wash it alternately with water and ethanol three times, dry it in vacuum at 60°C for 12 hours, and perform electrochemical...
Embodiment 2
[0056] Weigh 0.2g sodium formate and add to 1.5ml ultrapure water to obtain sodium formate solution; weigh 0.2g NiCl 2 ·6H 2 O was added into 13mlDMF for ultrasonic dissolution to obtain a nickel chloride solution;
[0057] Sodium formate solution and nickel chloride solution were mixed and ultrasonically oscillated, then added to a 25ml reaction kettle, and the pretreated foamed copper in Example 1 was added, sealed, placed in a temperature-programmed oven with a heating rate of 3°C / min, at 150°C React at room temperature for 24 hours, take out the copper foam, wash with water and ethanol alternately for 3 times, dry in vacuum at 60°C for 12 hours, and then perform electrochemical hydrogen evolution polarization curve test, place it in the air at room temperature for 6 hours to obtain Catalyst 2.
Embodiment 3
[0059] Weigh 0.1g of sodium formate and add it to 1.5ml of ultrapure water to obtain a sodium formate solution; weigh 0.4g of nickel acetylacetonate and add it to 13ml of DMF for ultrasonic dissolution to obtain a nickel acetylacetonate solution;
[0060] Sodium formate solution and nickel acetylacetonate solution were mixed and ultrasonically oscillated, then added to a 25ml reaction kettle, and the pretreated foamed copper in Example 1 was added, sealed, placed in a temperature-programmed oven with a heating rate of 3°C / min, at 160°C React at room temperature for 20 hours, take out the copper foam, wash with water and ethanol alternately for 3 times, dry in vacuum at 60°C for 12 hours, and then perform electrochemical hydrogen evolution polarization curve test, place it in the air at room temperature for 10 hours to obtain Catalyst 3.
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