Indium-nickel alloy/carbon nanotube modified lithium carbon fluoride battery positive electrode plate, preparation method thereof and lithium carbon fluoride battery
A lithium carbon fluoride battery and carbon nanotube modification technology, which is applied to the electrodes of primary batteries, battery electrodes, non-aqueous electrolyte batteries, etc., can solve the problem of low battery reaction kinetics, affecting battery capacity performance, and poor rate performance. problem, to achieve the effects of reducing polarization, high voltage platform and platform stability, and improving rate performance
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[0032] This embodiment provides a method for preparing an indium-nickel alloy / carbon nanotube modified lithium carbon fluoride battery positive plate, including the following steps:
[0033] Step 1, preparing the indium-nickel alloy / carbon nanotube composite material, the specific method is:
[0034] In step 1.1, the molar ratio of indium, nickel and carbon atoms is 1:(5-20):(20-50) and the indium source, the nickel source and the carbon source are uniformly mixed to obtain a mixture A;
[0035] Step 1.2, put the mixture A in a high-temperature tube furnace, raise the temperature from room temperature to 150-200°C at a rate of 15-30°C / min under an inert atmosphere, and keep it warm for 1-2h;
[0036] Step 1.3, after the heat preservation is completed, close the high-temperature tube furnace, and take out the mixture A after it drops to room temperature, and obtain the product A;
[0037] Step 1.4, put the product A into a mortar and grind it thoroughly, put it into a high-tem...
Embodiment 1
[0047] A method for preparing an indium-nickel alloy / carbon nanotube modified lithium carbon fluoride battery positive plate, comprising the following steps:
[0048] Step 1, preparing the indium-nickel alloy / carbon nanotube composite material, the specific method is:
[0049] Step 1.1, mix indium nitrate, nickel nitrate hexahydrate and melamine according to the molar ratio of indium, nickel and carbon atoms at 1:9:40, then add them to a high-speed centrifugal dispersion tank and disperse for 10 minutes at a speed of 1500r / min, take out to obtain mixture A;
[0050] Step 1.2, put the mixture A in a high-temperature tube furnace, and rapidly raise the temperature to 200°C at a rate of 30°C / min under an inert atmosphere, and keep it for 1 hour;
[0051] Step 1.3, after the heat preservation is completed, close the high-temperature tube furnace, and take out the mixture A after it drops to room temperature, and obtain the product A;
[0052] Step 1.4, put the product A in a mor...
Embodiment 2
[0058] A method for preparing an indium-nickel alloy / carbon nanotube modified lithium carbon fluoride battery positive plate, comprising the following steps:
[0059] Step 1, preparing the indium-nickel alloy / carbon nanotube composite material, the specific method is:
[0060] Step 1.1, mix indium sulfate, nickel sulfate and urea according to the molar ratio of indium, nickel and carbon atoms at 1:5:20, then add them to a high-speed centrifugal dispersion tank and disperse for 5 minutes at a speed of 2000r / min, and take out to obtain mixture A ;
[0061] Step 1.2, put the mixture A in a high-temperature tube furnace, and rapidly raise the temperature to 150°C at a rate of 15°C / min under a nitrogen atmosphere, and keep it for 2 hours;
[0062] Step 1.3, after the heat preservation is completed, close the high-temperature tube furnace, and take out the mixture A after it drops to room temperature, and obtain the product A;
[0063] Step 1.4, put the product A in a mortar and g...
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