An integrated method for in-situ powder coating and electrode plate preparation for lithium-sulfur batteries
A lithium-sulfur battery, in-situ technology, applied in battery electrodes, secondary batteries, electrochemical generators, etc., can solve the problems of low production efficiency, long preparation period and high cost
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Embodiment 1
[0041] This example is used in the integrated method of in-situ powder coating and electrode plate preparation for lithium-sulfur batteries (flow chart as shown in figure 1 shown), including the following steps:
[0042] 1) According to the volume ratio of absolute ethanol and deionized water of 1:2, mix absolute ethanol and water; under stirring conditions, add ammonia water drop by drop to the above system, and adjust the pH value of the system to 8.5 (detect with a pH meter) to obtain a mixed solution;
[0043] 2) Take elemental sulfur (positive electrode active material) and add it to the mixed solution obtained in step 1) (so that the concentration of elemental sulfur is 0.1g / ml), and ultrasonically disperse it for 30 minutes; then, the mass ratio of elemental sulfur to dopamine hydrochloride is 98 :2 ratio, add dopamine hydrochloride, continue to stir 2h, get suspension;
[0044] 3) Place the suspension obtained in step 2) in a blast drying oven at 80°C for 30 minutes ...
Embodiment 2
[0051] This embodiment is used for the integrated method of in-situ powder coating and electrode plate preparation for lithium-sulfur batteries, including the following steps:
[0052] 1) According to the volume ratio of absolute ethanol and deionized water of 1:2, mix absolute ethanol and water; under stirring conditions, add ammonia water drop by drop to the above system, and adjust the pH value of the system to 8.5 (detect with a pH meter) to obtain a mixed solution;
[0053] 2) Take elemental sulfur (positive electrode active material) and add it to the mixed solution obtained in step 1) (so that the concentration of elemental sulfur is 0.1g / ml), and ultrasonically disperse it for 30 minutes; then, the mass ratio of elemental sulfur to dopamine hydrochloride is 96 : The ratio of 4, add dopamine hydrochloride, continue to stir 2h, get suspension;
[0054] 3) Place the suspension obtained in step 2) in a blast drying oven at 80°C for 30 minutes to make the ammonia gas fully...
Embodiment 3
[0060] This embodiment is used for the integrated method of in-situ powder coating and electrode plate preparation for lithium-sulfur batteries, including the following steps:
[0061] 1) According to the volume ratio of absolute ethanol and deionized water of 1:2, mix absolute ethanol and water; under stirring conditions, add ammonia water drop by drop to the above system, and adjust the pH value of the system to 8.5 (detect with a pH meter) to obtain a mixed solution;
[0062] 2) Take elemental sulfur (positive electrode active material) and add it to the mixed solution obtained in step 1) (so that the concentration of elemental sulfur is 0.1g / ml), and ultrasonically disperse it for 30 minutes; then, the mass ratio of elemental sulfur to dopamine hydrochloride is 94 :6 ratio, add dopamine hydrochloride, continue to stir 2h, get suspension;
[0063] 3) Place the suspension obtained in step 2) in a blast drying oven at 80°C for 30 minutes to make the ammonia gas fully volatil...
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