Preparation method of LiPF2 and lithium ion battery non-aqueous electrolyte containing LiPF2
A lithium difluorophosphate and lithium-ion battery technology, applied in the field of electronic chemicals, can solve the problems of easy formation of by-products, low yield, complicated operation, etc., and achieve the effect of excellent low temperature, high product purity, and simple purification
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Embodiment 1
[0037] Place the anhydrous selenic acid in a 2000mL hard glass or quartz flask with a mechanical stirring device, and add fluorosulfonic acid HSO 3 F, anhydrous selenic acid and HSO 3 The molar ratio of F is 1:10. Then install a reflux condenser tube (preferably a quartz condenser tube) on the flask. The tube is cooled by passing water. The upper outlet of the tube is connected with two cold traps frozen to -78℃ with a Teflon tube. Under vigorous stirring, it is slowly heated until it starts to reflux. The gas produced in the reaction condenses in the first cold trap, and the second cold trap serves to isolate the moisture in the air. After the gas evolution ceases (about 2h), the first cold trap is removed for fractional distillation, and it is distilled from the cold trap at -78°C to the cold trap at -196°C. After two distillations, the purity can be obtained. SeO 2 F 2 The product is collected for use, among which, anhydrous selenic acid and fluorosulfonic acid HSO 3 The rea...
Embodiment 2
[0039] Place the anhydrous selenic acid in a 2000mL hard glass or quartz flask with a mechanical stirring device, and add fluorosulfonic acid HSO 3 F, anhydrous selenic acid and HSO 3 The molar ratio of F is 1:8. Then install a reflux condenser tube (preferably a quartz condenser tube) on the flask. The tube is cooled by passing water. The upper outlet of the tube is connected with two cold traps frozen to -78℃ with a Teflon tube. Under vigorous stirring, it is slowly heated until it starts to reflux. The gas produced in the reaction condenses in the first cold trap, and the second cold trap serves to isolate the moisture in the air. When the gas evolution is stopped (about 2h), the first cold trap is removed for fractional distillation, and it is distilled from the cold trap at -78°C to the cold trap at -180°C. After two distillations, the purity can be obtained. SeO 2 F 2 Product collection for use, anhydrous selenic acid and fluorosulfonic acid HSO 3 The reaction temperature...
Embodiment 3
[0041] Place the anhydrous selenic acid in a 2000mL hard glass or quartz flask with a mechanical stirring device, and add fluorosulfonic acid HSO 3 F, anhydrous selenic acid and HSO 3 The molar ratio of F is 1:5. Then install a reflux condenser tube (preferably a quartz condenser tube) on the flask. The tube is cooled by passing water. The upper outlet of the tube is connected with two cold traps frozen to -78℃ with a Teflon tube. Under vigorous stirring, it is slowly heated until it starts to reflux. The gas produced in the reaction condenses in the first cold trap, and the second cold trap serves to isolate the moisture in the air. After the gas evolution ceases (about 2h), the first cold trap is removed for fractional distillation, and it is distilled from the cold trap at -78°C to the cold trap at -196°C. After two distillations, the purity can be obtained. SeO 2 F 2 The product is collected for use, among which, anhydrous selenic acid and fluorosulfonic acid HSO 3 The reac...
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