Sulfur nanoparticles, preparation thereof, and preparation of lithium sulfur battery positive electrode by sulfur nanoparticles
A lithium-sulfur battery, nano-sulfur technology, applied in the preparation/purification of sulfur, battery electrodes, lithium storage batteries, etc., can solve the problem of inability to meet the commercialization requirements of lithium-sulfur batteries, unsatisfactory high-rate performance, and unfavorable large-scale production, etc. The problem is to increase the electrochemical reaction rate, the method is simple and easy to operate, and the size is small.
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Embodiment 1
[0025] The first step: preparing nano-sulfur particles.
[0026] (1) Dissolve 2.5g of gelatin in 100mL of deionized water. After fully swelling, heat up to 60°C. After the dissolution is complete, stop heating to prepare an aqueous solution of gelatin; take 37.2g of sodium thiosulfate pentahydrate and dissolve it in 50mL of deionized water. In water, sodium thiosulfate solution is prepared; sodium thiosulfate solution is added in aqueous gelatin solution, and stirred evenly;
[0027] (2) Take 25mL of concentrated hydrochloric acid in 75mL of deionized water, and mix to obtain a dilute hydrochloric acid solution;
[0028] (3) Under magnetic stirring conditions, the dilute hydrochloric acid obtained in step (2) was added dropwise to the solution obtained in step (1), after the dropwise addition was completed, reacted for 30 minutes, and the reaction temperature was 60°C;
[0029] (4) Centrifuge the solution obtained in step (3), wash it twice with deionized water, add the lower...
Embodiment 2
[0037] The first step: preparing nano-sulfur particles.
[0038] (1) Dissolve 2.5g of gelatin in 100mL of deionized water. After fully swelling, heat up to 60°C. After the dissolution is complete, stop heating to prepare an aqueous solution of gelatin; take 37.2g of sodium thiosulfate pentahydrate and dissolve it in 50mL of deionized water. In water, sodium thiosulfate solution is prepared; sodium thiosulfate solution is added in aqueous gelatin solution, and stirred evenly;
[0039] (2) Take 25mL of concentrated hydrochloric acid in 75mL of deionized water, and mix to obtain a dilute hydrochloric acid solution;
[0040] (3) Under magnetic stirring conditions, add the dilute hydrochloric acid obtained in step (2) dropwise to the solution obtained in step (1), after the dropwise addition, react for 2 hours, and the reaction temperature is 60°C;
[0041] (4) Centrifuge the solution obtained in step (3), wash it twice with deionized water, add the lower precipitate obtained by c...
Embodiment 3
[0047] The first step: preparing nano-sulfur particles.
[0048] (2) Dissolve 3.6g of gelatin in 100mL of deionized water. After fully swelling, heat up to 60°C. After the dissolution is complete, stop heating to prepare an aqueous gelatin solution; dissolve 37.2g of sodium thiosulfate pentahydrate in 50mL of deionized water In water, sodium thiosulfate solution is prepared; sodium thiosulfate solution is added in aqueous gelatin solution, and stirred evenly;
[0049] (2) Take 25mL of concentrated hydrochloric acid in 75mL of deionized water, and mix to obtain a dilute hydrochloric acid solution;
[0050] (3) Under magnetic stirring conditions, add the dilute hydrochloric acid obtained in step (2) dropwise to the solution obtained in step (1), after the dropwise addition, react for 2 hours, and the reaction temperature is 60°C;
[0051] (4) Centrifuge the solution obtained in step (3), add the lower precipitate obtained by centrifugation into 200mL deionized water, and ultras...
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