V2O5-carbon fluoride mixed positive electrode material and preparation method thereof

A technology of mixing positive electrode materials and V2O5, which is applied in the direction of battery electrodes, electrical components, circuits, etc., can solve the problems of difficult reaction control, insignificant improvement effect, and many kinds of reagents, so as to improve the large current discharge capacity and good uniform mixing Effect, the effect of improving the voltage hysteresis problem

Active Publication Date: 2020-01-17
GUIZHOU MEILING POWER SUPPLY CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although this patent improves the voltage hysteresis of carbon fluoride, the prepared battery at room temperature and 1.0C rate only increases the initial discharge voltage of fluorinated carbon material from 1.7V to 2.0V, and -10°C and 0.1C The initial discharge voltage of carbon materials is increased from 1.81V to 2.06V, and the improvement effect is not obvious
[0005] Patent application CN109888268A discloses an oxide / carbon fluoride composite positive electrode material for lithium primary batteries and its preparation method, specifically: impregnating the precursor solution of vanadium pentoxide into the carbon fluoride material by impregnation method, and carrying out Aging at a certain temperature, and after heat treatment at a certain temperature, an oxide-coated carbon fluoride material is prepared. At the same time, it is disclosed that the vanadium pentoxide material has a high discharge voltage during discharge, but the vanadium pentoxide in this application The coating layer is prepared by selecting the precursors as ammonium metavanadate, sodium vanadate, etc., the molar concentration of the solution is 0.5-5mol / L, and the reducing agent impregnated at the same time is ethylene glycol, acetic acid, oxalic acid, etc., the reaction The molar ratio of the precursor to the reducing agent is 1:5-10, which shows that the formation principle of vanadium pentoxide adopts the chemical reduction method, which makes the reaction control difficult, and there are many kinds of reagents used.

Method used

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  • V2O5-carbon fluoride mixed positive electrode material and preparation method thereof
  • V2O5-carbon fluoride mixed positive electrode material and preparation method thereof
  • V2O5-carbon fluoride mixed positive electrode material and preparation method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0043] (1) Add 10kg of carbon fluoride material to an ultrasonic disperser equipped with 12.5kg of dispersant, and disperse ultrasonically for 25 minutes to obtain a uniform mixed solution;

[0044] (2) 5kg modified V 2 o 5 Add it to the mixture obtained in (1), and disperse it ultrasonically for 45 minutes to obtain a mixture solution;

[0045] (3) Heat the mixture solution to 70°C, and keep stirring until a paste is obtained;

[0046] (4) Put the paste in a high-energy ball mill for high-energy ball milling, the ball milling speed is 4000r / min, and the ball milling time is 75s. After the ball milling is completed, stop the operation, cool for 15min, and repeat the high-energy ball milling again. The total ball milling time is controlled at 1.5h, and the obtained mixed slurry;

[0047] (5) The mixed slurry is dried, cooled, ground, and passed through a 150-mesh sieve to obtain V 2 o 5 Modified carbon fluoride cathode material;

[0048] The dispersant is calculated by ma...

Embodiment 2

[0054] (1) Add 10kg of carbon fluoride material to an ultrasonic disperser equipped with 10kg of dispersant, and disperse ultrasonically for 20 minutes to obtain a uniform mixed solution;

[0055] (2) Put 9kgV 2 o 5 Add to the mixed solution obtained in (1), and ultrasonically disperse for 30 minutes to obtain a mixed solution;

[0056] (3) Heat the mixture solution to 60°C, and keep stirring until a paste is obtained;

[0057] (4) Put the paste in a high-energy ball mill for high-energy ball milling, the ball milling speed is 3000r / min, and the ball milling time is 120s. After the ball milling is completed, stop the operation, cool for more than 10min, and repeat the high-energy ball milling again. The total ball milling time is controlled at 1h, and the obtained mixed slurry;

[0058] (5) The mixed slurry is dried, cooled, ground, and passed through a 100-mesh sieve to obtain V 2 o 5 Modified carbon fluoride cathode material;

[0059] The dispersant is calculated by ma...

Embodiment 3

[0065] (1) Add 10kg of carbon fluoride material to an ultrasonic disperser equipped with 15kg of dispersant, and disperse ultrasonically for 30 minutes to obtain a uniform mixed solution;

[0066] (2) Put 1kgV 2 o 5 Add it to the mixed solution obtained in (1), and disperse it ultrasonically for 60 minutes to obtain a mixed solution;

[0067] (3) Heat the mixture solution to 80°C, and keep stirring until a paste is obtained;

[0068] (4) Put the paste in a high-energy ball mill for high-energy ball milling, the ball milling speed is 5000r / min, and the ball milling time is 30s. After the ball milling is completed, stop the operation, cool for more than 10min, and repeat the high-energy ball milling again. The total ball milling time is controlled at 2h, and the obtained mixed slurry;

[0069] (5) The mixed slurry is dried, cooled, ground, and passed through a 200-mesh sieve to obtain V 2 o 5 Modified carbon fluoride cathode material;

[0070] The dispersant is calculated ...

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Abstract

The invention relates to the technical field of lithium battery materials, in particular to a V2O5-carbon fluoride mixed positive electrode material and a preparation method thereof. According to theinvention, a V2O5 material is doped in a carbon fluoride positive electrode material, so that the advantages that the V2O5 material has higher discharge platform voltage, good high-current discharge capacity, very small heat generation during the discharge process and the like are fully utilized, the problem of voltage lag at the initial discharge stage of the carbon fluoride positive electrode material is solved, the large-current discharge capacity of the carbon fluoride positive electrode material is effectively improved, the rate capability of the lithium carbon fluoride battery is greatlyimproved, the temperature rise during the discharge process of the lithium carbon fluoride battery is reduced, and the application range of the lithium carbon fluoride battery is expanded. Under theaction of a dispersing agent, the two materials are mixed in a high-energy ball milling manner, so that the problem of voltage lag at the initial discharge stage of the carbon fluoride positive electrode material and the problem of high heat productivity under a high-current discharge condition are further solved. According to the present invention, the zirconium oxide balls are added during the high-energy ball milling process, so that the uniformity of the mixed materials is further improved.

Description

technical field [0001] The invention relates to the technical field of lithium battery materials, in particular to a V 2 o 5 - Carbon fluoride mixed positive electrode material and preparation method thereof. Background technique [0002] A primary lithium battery is a high-energy chemical primary battery, commonly known as a lithium battery. Metal lithium is used as the negative electrode, solid salts or salts dissolved in organic solvents are used as the electrolyte, and metal oxides or other solid and liquid oxidants are used as the positive electrode active material. At present, the more mature systems mainly include lithium-manganese dioxide battery, lithium-thionyl chloride battery, lithium-sulfur dioxide battery and so on. In recent years, lithium-carbon fluoride batteries have attracted much attention due to their higher energy density. However, because fluorinated carbon is a compound formed by the reaction of various forms of carbon and fluorine gas, the conduc...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M4/36H01M4/48H01M4/58
CPCH01M4/364H01M4/48H01M4/582Y02E60/10
Inventor 张红梅王畅唐月娇石斌陈铤王庆杰王毅陈晓涛王华国
Owner GUIZHOU MEILING POWER SUPPLY CO LTD
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