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Lithium-ion battery, lithium-rich anode sheet and preparation method thereof

A lithium-ion battery and anode sheet technology, which is applied in battery electrodes, non-aqueous electrolyte battery electrodes, secondary batteries, etc. Hard and brittle, good self-discharge performance, low environmental requirements

Active Publication Date: 2015-09-16
DONGGUAN AMPEREX TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Both of these two patents compensate for the first irreversible capacity by forming an SEI film on the surface of the anode before assembling the battery cell; however, when this method is used to replenish lithium, the SEI film formed on the surface of the active material has a certain thickness, and some lithium ions will Embedded in the active material makes the volume of the active material expand, resulting in the reduction of the gap between the active material particles, the diaphragm becomes hard and brittle, the diaphragm will fall off during the winding process, and the self-discharge of the prepared battery is serious, and the formation of The anode behind the SEI film needs to strictly control the humidity and atmosphere of the environment when assembling the battery, and the production cost is high

Method used

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  • Lithium-ion battery, lithium-rich anode sheet and preparation method thereof
  • Lithium-ion battery, lithium-rich anode sheet and preparation method thereof
  • Lithium-ion battery, lithium-rich anode sheet and preparation method thereof

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preparation example Construction

[0028] refer to figure 1 According to the preparation method of the lithium-rich anode sheet 1 of the lithium-ion battery of the present invention, it is used to prepare the lithium-rich anode sheet 1 of the lithium-ion battery described in the first aspect of the present invention, comprising the following steps: the active material, the conductive agent, the adhesive Mix the adhesive and solvent evenly to make a slurry, coat the slurry on the current collector 12, cold press, and dry to obtain the initial anode sheet, wherein the slurry coated on the current collector 12 becomes Diaphragm 11; control the electrolyte infiltration depth of the initial anode sheet to obtain a wet anode sheet; arrange the ion conduction electronic insulation layer and the lithium-rich source on the surface of the wet anode sheet in sequence, and then apply an external coating on the lithium-rich source and the wetted anode sheet The electric field charges it, so that the lithium on the lithium-r...

Embodiment 1

[0037] (1) Preparation of anode sheet

[0038] A preparation of the initial anode sheet

[0039] The active material graphite (the gram capacity of graphite is 340mAh / g, the first coulombic efficiency is 91%), the binder (styrene-butadiene rubber), and the conductive agent (super conductive carbon) are mixed according to the ratio of mass ratio = 92:3:5 The solvent (nitromethylpyrrolidone) is mixed evenly to form a slurry, which is coated on the current collector (copper foil) 12, and then cold-pressed and dried to form an initial anode sheet with a capacity of 1500mAh (the capacity of the battery cell before lithium supplementation) ), wherein the slurry coated on the current collector 12 is dried to form a membrane 11, the coating thickness of one side of the membrane 11 is 60 μm, and the water content does not exceed 300 ppm.

[0040] B Lithium-rich front plate preparation

[0041] Weld the lugs on the initial anode sheet, and then evenly spray the electrolyte on the surf...

Embodiment 2

[0054] With embodiment 1, except following difference with embodiment 1:

[0055] A preparation of the initial anode sheet

[0056] The active material is a mixture of graphite and silicon (wherein the gram capacity of the mixture is 400mAh / g, and the first Coulombic efficiency is 82%).

[0057] B Lithium-rich front plate preparation

[0058] The electrolyte solution wets the diaphragm 11 to a depth of 50%, that is, the penetration depth is 30 μm.

[0059] C lithium-rich process parameter settings

[0060] The lithium-rich amount of the lithium-rich anode sheet is 12% of the capacity of the initial anode sheet, then the lithium-rich capacity is:

[0061] 1500×12%=180mAh

[0062] Lithium-rich current selection: 0.1C current, that is

[0063] 1500×0.1=150mA

[0064] The charging time is: (180 / 150)×3600=4320s

[0065] That is, charge between the soaked anode sheet and the metal lithium strip, the charging current is 150mA, and the charging time is 4320s. After the charging...

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Abstract

The invention provides a lithium ion battery as well as a lithium-rich positive piece and a preparation method thereof. The lithium-rich positive piece comprises a current collector and a diaphragm, wherein the diaphragm contains a positive active substance and is formed on the current collector. The diaphragm and the current collector form an initial positive piece, one side, away from the current collector, of the diaphragm is a surface layer, and one side, close to the current collector, of the diaphragm is a bottom layer; after the diaphragm of the initial positive piece is infiltrated in electrolyte and charged to be enriched with lithium, a lithium-rich layer and a non-lithium-rich layer are formed on the diaphragm, and the thickness of the lithium-rich layer is smaller than that of the diaphragm; a metal lithium layer is also distributed on the surface layer of the diaphragm, and the lithium sum of the lithium-rich layer and the metal lithium layer is matched with the lithium-rich capacity needed by the initial positive piece. The lithium ion battery comprises the lithium-rich positive piece. An SEI (solid electrolyte interphase) membrane is produced only in the area which is infiltrated by the electrolyte, the environmental requirement of a winding procedure is low, the lithium can be uniformly enriched, and the hardness of the lithium-rich pole piece also can meet the winding requirement.

Description

technical field [0001] The invention relates to a lithium ion battery, in particular to a lithium ion battery, a lithium-rich anode sheet and a preparation method thereof. Background technique [0002] The first coulombic efficiency of traditional anode materials is low. Taking silicon anode materials as an example, the first coulombic efficiency is between 65% and 85%. In order to greatly increase the energy density of the cell, it is necessary to increase the first Coulombic efficiency of the cell. Therefore, experts at home and abroad have carried out extensive research and achieved some results: the Chinese patent application publication number CN102315422A proposes a lithium-enriching method for the lithium-supplementing cathode, that is, the cathode, the separator and the anode are assembled into an electric battery by stacking sheets. Then put the lithium-supplementing cathode side on the side of the battery cell, apply a voltage charge between the lithium-supplement...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M10/0525H01M4/13H01M4/139
CPCH01M4/13H01M4/139H01M4/366H01M10/0525Y02E60/10
Inventor 游从辉周华利曹福彪徐延杰方宏新张柏清
Owner DONGGUAN AMPEREX TECH
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