A processing method for lithium metal phosphate material and lithium metal phosphate material obtained by the method
A processing method and metal lithium technology, applied in the field of lithium-ion batteries, can solve the problems of large specific surface area, poor electronic and ionic conductivity, and increased water absorption, and achieve the effect of reducing specific surface area.
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Embodiment 1
[0040] This embodiment is used to illustrate the processing method of the lithium metal phosphate material of the present invention.
[0041] 100g LiFePO 4 The heat treatment is carried out in a tubular atmosphere furnace. The heat treatment conditions include: treatment at a constant temperature of 750°C for 5 hours, an atmosphere of 99.99% carbon dioxide, and a gas flow rate of 6L / min to obtain sample A, and use sample A to make CR2025 button batteries.
[0042] After measurement, the carbon content of the obtained sample A is 1.02% by weight; the specific surface area is 10.7m 2 / g; Under 23℃, 45% relative humidity (constant temperature and humidity box) within 7 hours, the water absorption reaches saturation, and the saturated water absorption is 1835ppm; the manufactured CR2025 button battery is charged and discharged at a rate of 0.1C, the first discharge gram specific capacity It is 159.6mAh / g.
Embodiment 2
[0044] This embodiment is used to illustrate the processing method of the lithium metal phosphate material of the present invention.
[0045] 100g LiMnPO 4 Heat treatment in a tubular atmosphere furnace. The heat treatment conditions include: treatment at a constant temperature of 720°C for 2 hours, an atmosphere of 99.99% sulfur trioxide (using 60°C hot nitrogen as the carrier gas), and a gas flow of 4L / min to obtain sample B , And use sample B to make CR2025 button battery.
[0046] After measurement, the carbon content of the obtained sample B is 2.16% by weight; the specific surface area is 16.5m 2 / g; Under 23℃, 45% relative humidity (constant temperature and humidity box), the water absorption reaches saturation within 1 hour, and the saturated water absorption is 5945ppm; the finished CR2025 button battery has a charge-discharge rate of 0.1C, its first discharge gram ratio The capacity is 110.8mAh / g.
Embodiment 3
[0048] This embodiment is used to illustrate the processing method of the lithium metal phosphate material of the present invention.
[0049] Put 100g LiNiPO 4 The heat treatment is carried out in a tubular atmosphere furnace, and the heat treatment conditions include: treatment at a constant temperature of 700° C. for 10 hours, an atmosphere of 99.99% carbon dioxide, and a gas flow rate of 10 L / min to obtain sample C, and use sample C to make CR2025 button batteries.
[0050] After measurement, the carbon content of the obtained sample C is 2.33% by weight; the specific surface area is 18.2m 2 / g; At 23℃ and 45% relative humidity (constant temperature and humidity box), the water absorption reaches saturation within 55 minutes, and the saturated water absorption is 6521ppm; the manufactured CR2025 button battery has a charge-discharge rate of 0.1C, and its first discharge gram ratio The capacity is 114.1mAh / g.
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