Micro-capsule-structured carbon-sulfur compound and preparation method and application thereof
A composite and microcapsule technology is applied in the field of nanocomposite materials and their preparation, which can solve the problems of reduced utilization rate of elemental sulfur, low utilization rate of sulfur of positive active material, and reduced cycle stability of batteries, and achieves improved cycle stability, Avoid the "shuttle" effect and the effect of low price of raw materials
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Embodiment 1
[0045] Take 3.33g of silica particles (particle size 100-200nm) and disperse them in 10g of ethanol, after ultrasonic stirring for 30min, add 10g (20wt%) of phenolic resin ethanol solution, continue stirring for 3h, add 6.66g (24nm, 40wt%) Silica sol, ultrasonically stirred for 2 hours, scraped onto a glass plate, kept in an oven at 100°C for 24 hours, transferred to a tube furnace for calcination under argon gas, kept at 350°C for 3 hours, and kept at 900°C for 5 hours, then sprayed with 10% hydrogen Fluoric acid dissolves and removes the silicon template to obtain a hollow carbon material.
[0046] Dissolve 2g of lithium sulfide powder in ethanol (concentration 20mg / ml), add the above-mentioned hollow carbon material, wash the lithium sulfide on the surface with ethanol after immersion for 1 hour, after repeated immersion for 5 times, dry it in vacuum at 60°C for 10 hours, under argon gas Calcined at 300℃ for 2h to obtain carbon-coated lithium sulfide material.
[0047] Add...
Embodiment 2
[0049] Take 10g of calcium carbonate powder (particle size 300nm) and disperse it in 10g of water, after ultrasonic stirring for 30min, add 10g of gelatin, stir at 70°C for 3h, after ultrasonic stirring for 2h, scrape-coat it on a glass plate, keep the temperature in an oven at 100°C for 24h, transfer to Roasting in a tube furnace under argon gas, constant temperature at 350°C for 3h and 900°C for 5h, dissolve and remove calcium template with 2M hydrochloric acid solution to obtain hollow carbon material.
[0050] Dissolve 8.0035g of lithium sulfide powder in isopropanol (concentration: 3mg / ml), add the above-mentioned hollow carbon material, wash the lithium sulfide on the surface with isopropanol after immersion for 1 hour, repeat the immersion for 5 times, and dry it in vacuum at 60°C for 10 hours , roasted at 300°C for 2h under argon gas to obtain carbon-coated lithium sulfide materials.
[0051] Add 16.7 mg of phosphorus pentasulfide into tetraglyme solution at 60°C (conc...
Embodiment 3
[0053] Take 1g of PVP powder (particle size 100nm) and disperse it in 10g of water, after ultrasonic stirring for 30min, add 1g of furfural, stir at 70°C for 3h, after ultrasonic stirring for 2h, keep the temperature in an oven at 100°C for 24h, transfer to a tube furnace for roasting under argon gas After constant temperature at 350°C for 3h and 900°C for 5h, 0.05g of hollow carbon material was obtained.
[0054] Dissolve 1.0496g of lithium sulfide powder in isopropanol (concentration: 5mg / ml), add the above-mentioned hollow carbon material, wash the lithium sulfide on the surface with isopropanol after immersion for 1 hour, repeat the immersion for 5 times, and then vacuum-dry at 60°C for 10 hours , roasted at 300°C for 2h under argon gas to obtain carbon-coated lithium sulfide materials.
[0055] Add 4.1 g of phosphorus pentasulfide into a diethylene glycol dimethyl ether solution at 60°C (concentration: 5 mg / ml), stir for 3 hours, ultrasonically disperse for 10 hours, and ...
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