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Electrolyte for lithium ion battery and preparation method thereof

A lithium-ion battery and electrolyte technology, applied in secondary batteries, circuits, electrical components, etc., can solve the problems of battery storage capacity attenuation, poor work performance, and poor anti-overcharge performance, so as to reduce the change of crystal form, The effect of increasing the operating temperature range and prolonging the cycle life

Active Publication Date: 2012-08-15
广州云通锂电池股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Based on the above-mentioned relevant research on the existing lithium-ion battery electrolyte and the relevant published patented technologies, it can be seen that the existing technology uses lithium salts as electrolytes, common organic solvents as solutions, and certain functional additives. Lithium-ion batteries manufactured by the liquid solution obviously have the following deficiencies: 1) the high temperature or low temperature work performance is poor, and even at high (above 55°C) or low (below -30°C) batteries cannot work at all or have poor work performance; 2) ) The charging and discharging effect of the power type lithium-ion battery is poor, which affects the normal operation of the lithium-ion battery pack and severely limits the application range of the lithium-ion power battery; 3) The battery storage capacity is severely attenuated, which directly affects the capacity and cycle of the lithium-ion battery 4) poor anti-overcharge performance, which affects the charging and discharging efficiency, battery capacity and cycle life of lithium-ion batteries; 6) Many electrolyte solvents such as furan, pyridine, and acetone are highly toxic, which will more or less cause a certain degree of pollution in the production and use of lithium-ion batteries and the process of waste batteries
Although the above deficiencies are not entirely caused by the electrolyte of lithium-ion batteries, all the deficiencies have a direct impact on the conductivity of the electrolyte, compatibility with the electrodes, charge and discharge performance of the electrodes, cycle life, and battery safety.

Method used

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  • Electrolyte for lithium ion battery and preparation method thereof
  • Electrolyte for lithium ion battery and preparation method thereof
  • Electrolyte for lithium ion battery and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] A preparation method for lithium ion battery electrolyte, the steps are:

[0044] The first step, under the condition of vacuum or inert gas protection, will be the mixture of main solvent EC, DEC, VEC (ethylene carbonate) three that volume ratio mixes, the solvent additive HMDS (hexamethasone) that equal volume ratio mixes Disilazane), DECP (diethyl (cyanomethyl) phosphonate), TS (propenyl sulfate) three kinds of mixture, respectively with a mass ratio of 5% solvent prior vacuum drying to constant weight Desiccant lithium oxide (Li 2 O) mixing, stirring for 4 hours, filtering to remove lithium oxide and lithium hydroxide precipitates, ensuring that the water content in the solvent is lower than 10ppm.

[0045] The second step is to mix the main solvent that has been dried in the first step and mixed in equal volume ratio with the dry solvent additive that accounts for 0.1% of the main solvent volume ratio, and mix evenly under the condition of vacuum or inert gas prot...

Embodiment 2

[0050] A preparation method for lithium ion battery electrolyte, the steps are:

[0051] The first step, under the condition of vacuum or inert gas protection, the mixture of three main solvents EC, DEC, BS (butenyl sulfite) mixed in equal volume ratio, the solvent additive HMDS (hexamethanol) mixed in equal volume ratio Disilazane), TS (propylene sulfate), and CDE (methylene disulfonate) are mixed with the desiccant lithium oxide ( Li 2 O) mixed, stirred for 4 hours, and filtered to remove lithium oxide and lithium hydroxide precipitates.

[0052] The second step is to mix the main solvent that has been dried in the first step and mixed in equal volume ratio with the dry solvent additive that accounts for 0.1% of the main solvent volume ratio, and mix evenly under the condition of vacuum or inert gas protection, that is, the electrolytic solution is obtained. liquid solvent.

[0053] The third step is to dry the LiPF of the main electrolyte with a molar ratio of 0.6:0.1:0....

Embodiment 3

[0057] A preparation method for lithium ion battery electrolyte, the steps are:

[0058] The first step, under the condition of vacuum or inert gas protection, the main solvent of the mixture of DMC, 1.3-PS, BS (butenyl sulfite) mixed in equal volume ratio, DECP (diethyl sulfite) mixed in equal volume ratio Base (cyanomethyl) sulfonate), TS (propylene sulfate), CDE (methylene disulfonate) mixture solvent additive, with a mass ratio of 4% of solvent prior vacuum drying to constant weight drying Lithium oxide (Li 2 O) mixing, stirring for 10 hours, filtering to remove lithium oxide and lithium hydroxide precipitates, ensuring that the water content in the solvent is lower than 10ppm.

[0059] The second step is to mix the main solvent that has been dried in the first step and mixed in equal volume ratio with the dry solvent additive that accounts for 0.2% of the main solvent volume ratio, and mix evenly under the condition of vacuum or inert gas protection, that is, the electro...

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PUM

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Abstract

The invention discloses an electrolyte for a lithium ion battery and a preparation method thereof. The electrolyte consists of a main electrolyte, an electrolyte additive, a main solvent and a solvent additive. The preparation method comprises the following steps of: A. under the condition of vacuum or inert gas protection, respectively mixing the main solvent and the solvent additive with a drying agent (lithium oxide) which is dried to be at constant weight in advance, and mixing and filtering to remove the lithium oxide and lithium hydroxide sediment; B. uniformly mixing the dried main solvent and the dried solvent additive from the step A; and C. adding a main electrolyte mixture and an electrolyte additive into the solvent mixed in the step B, and agitating and dissolving under the vacuum and inert gas protection to prepare a solution with the mass mol concentration of the main electrolyte of 0.5-1.5 M. The electrolyte has the advantages of abundant resources, low price and no toxin, effectively improves the work temperature range of the battery and effectively prolongs the circulating service life of the battery, so that various types of the lithium ion batteries are manufactured; and the electrolyte is particularly suitable for manufacturing a lithium ion power battery with high power capacity and high multiplying power charging and discharging capacity.

Description

technical field [0001] The present invention relates to the technical field of chemical power sources, more specifically to a lithium-ion battery electrolyte, and also to a preparation method for a lithium-ion battery electrolyte, which can be used to manufacture various types of lithium-ion batteries, and is also suitable for manufacturing High-rate charge-discharge lithium-ion power battery. Background technique [0002] At present, the electrolyte used in lithium-ion batteries manufactured by existing industries is mainly LiPF 6 、LiBF 4 etc. are electrolytes, the electrolyte concentration is 0.1-2.0M (mol / L, hereinafter referred to as M) EC-EMC, EC-EMC-EMC, EC-EMC-DEC, EC-DMC-DEC-PC (wherein EC is ethylene carbonate Ethyl carbonate, EMC is ethyl methyl carbonate, DEC is diethyl carbonate, DMC is dimethyl carbonate, PC is propylene carbonate, hereinafter the same) and other organic substances are solvent solutions. The electrolyte has a great influence on the performanc...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M10/0567H01M10/0569
CPCY02E60/10
Inventor 詹炳然唐帮助王建红詹金俊
Owner 广州云通锂电池股份有限公司
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