Preparation method of copper-antimony monatomic alloy catalyst and application of copper-antimony monatomic alloy catalyst in reduction of carbon dioxide
A catalyst, copper-antimony single technology, applied in metal processing equipment, transportation and packaging, nanotechnology for materials and surface science, etc., can solve the problems of low selectivity, easy generation of multi-carbon products, etc., and achieve a simple synthesis method. , the effect of excellent electrochemical carbon dioxide reduction performance, high carbon monoxide selectivity and activity
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Embodiment 1
[0037] The present embodiment prepares a copper-antimony single-atom alloy nano-catalyst, and the specific steps are as follows:
[0038] Disperse 1 mmol of antimony chloride in 20 ml of deionized water and add 3 mmol of citric acid to obtain mixed solution A; disperse 20 mmol of cupric chloride dihydrate in 20 ml of deionized water to obtain solution B; take 3.2 ml of mixed solution A, 2 ml of solution B, 1 ml of hydrochloric acid with a concentration of 3 mol per liter and 13.8 ml of deionized water, mixed to obtain 20 ml of mixed solution C; the mixed solution C was allowed to stand in an ice bath at -5°C for 60 minutes , and then poured into 10 ml of sodium borohydride aqueous solution with a concentration of 1 mol per liter at a rate of 10 ml per second to obtain mixed solution D; after mixed solution D was allowed to stand at room temperature for 2 hours, it was rotated at 10,000 rpm. , centrifugal separation for 10 minutes, the obtained product was ultrasonically washed...
Embodiment 2
[0047] The present embodiment prepares a copper-antimony single-atom alloy nano-catalyst, and the specific steps are as follows:
[0048] Disperse 1 mmol of antimony chloride in 20 ml of deionized water and add 3 mmol of citric acid to obtain mixed solution A; disperse 20 mmol of cupric chloride dihydrate in 20 ml of deionized water to obtain solution B; take 1.2 ml of mixed solution A, 2 ml of solution B, 1 ml of hydrochloric acid with a concentration of 3 mol per liter and 15.8 ml of deionized water, mixed to obtain 20 ml of mixed solution C; the mixed solution C was allowed to stand in an ice bath at -5°C for 60 minutes , and then poured into 10 ml of sodium borohydride aqueous solution with a concentration of 1 mol per liter at a rate of 10 ml per second to obtain mixed solution D; after mixed solution D was allowed to stand at room temperature for 2 hours, it was rotated at 10,000 rpm. , centrifugal separation for 10 minutes, the obtained product was ultrasonically washed...
Embodiment 3
[0056] The present embodiment prepares a copper-antimony single-atom alloy nano-catalyst, and the specific steps are as follows:
[0057] Disperse 1 mmol of antimony chloride in 20 ml of deionized water and add 3 mmol of citric acid to obtain mixed solution A; disperse 20 mmol of cupric chloride dihydrate in 20 ml of deionized water to obtain solution B; take 8 Milliliter of mixed solution A, 2 milliliters of solution B, 1 milliliter of hydrochloric acid with a concentration of 3 mol per liter, and 9 milliliters of deionized water were mixed to obtain 20 milliliters of mixed solution C; mixed solution C was allowed to stand in an ice bath at -5°C for 60 minutes , and then poured into 10 ml of sodium borohydride aqueous solution with a concentration of 1 mol per liter at a rate of 10 ml per second to obtain mixed solution D; after mixed solution D was allowed to stand at room temperature for 2 hours, it was rotated at 10,000 rpm. , centrifugal separation for 10 minutes, the obt...
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