Method for preparing carbon fluoride/fluorinated metal composite material
A composite material and metal fluoride technology, which is applied in negative electrodes, battery electrodes, active material electrodes, etc., can solve the problems of unsatisfactory battery performance and poor composite effect, and achieve rich inner pores, low cost, and high specific surface area. Effect
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Embodiment 1
[0015] The preparation method of the carbon fluoride / metal fluoride composite material provided in this embodiment includes the following steps in order:
[0016] (1) Carry out high-temperature carbonization of 1.0g Cu-BTC in a nitrogen atmosphere, the heating rate is 2°C / min, the carbonization temperature is 700°C, and then cooled to room temperature to obtain a composite material precursor;
[0017] (2) The composite material precursor prepared above is placed in a reaction kettle, dried at a temperature of 150° C., and then passed into a mixed gas composed of 25% fluorine and 75% nitrogen by volume fraction, and the temperature is raised to 400° C., fluorination reaction for 3 hours, and vacuum drying to obtain a carbon fluoride / metal fluoride composite material as the final product. The specific surface area of the product measured by the BET method is 537m 2 / g, the discharge specific capacity is 735mAh / g under the condition of 0.05C rate measured by electrochemical te...
Embodiment 2
[0019] The preparation method of the carbon fluoride / metal fluoride composite material provided in this embodiment includes the following steps in order:
[0020] (1) 1.0g MIL-101(Fe) was subjected to high-temperature carbonization in a nitrogen atmosphere, the heating rate was 2°C / min, the carbonization temperature was 700°C, and then cooled to room temperature to obtain a composite material precursor;
[0021] (2) The composite material precursor prepared above is placed in a reaction kettle, dried at a temperature of 150° C., and then passed into a mixed gas composed of 15% fluorine and 85% nitrogen by volume fraction, and the temperature is raised to 450° C., fluorination reaction for 2 hours, and vacuum drying to obtain a carbon fluoride / metal fluoride composite material as the final product. The specific surface area of the product measured by the BET method is 383m 2 / g, the discharge specific capacity is 791mAh / g under the condition of 0.05C rate measured by electro...
Embodiment 3
[0023] The preparation method of the carbon fluoride / metal fluoride composite material provided in this embodiment includes the following steps in order:
[0024] (1) 1.0g ZIF-67(Co) was subjected to high-temperature carbonization in a nitrogen atmosphere, the heating rate was 2°C / min, and the carbonization temperature was 750°C, and then cooled to room temperature to obtain a composite material precursor;
[0025] (2) The composite material precursor prepared above is placed in a reaction kettle, dried at a temperature of 150° C., and then passed into a mixed gas composed of 15% fluorine and 85% nitrogen by volume fraction, and the temperature is raised to 400° C., fluorination reaction for 2 hours, and vacuum drying to obtain a carbon fluoride / metal fluoride composite material as the final product. The specific surface area of the product measured by the BET method is 419m 2 / g, the discharge specific capacity is 799mAh / g under the condition of 0.05C rate measured by elec...
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