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A kind of lithium metal negative electrode and its preparation and application

A lithium metal negative electrode, lithium metal technology, applied in negative electrodes, battery electrodes, lithium batteries, etc., can solve the problems of reducing lithium metal battery capacity, battery coulombic efficiency and cycle life, safety issues, etc., and achieve good electrochemical reactions active effect

Active Publication Date: 2021-10-08
DALIAN INST OF CHEM PHYSICS CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

First, the lithium dendrite problem, that is, the growth of lithium dendrites during the charge-discharge cycle of the battery can cause internal short circuits and serious safety issues in the battery, and it can also cause repeated damage to the SEI film to cause reactions between metal lithium and the electrolyte.
Second, the cycle efficiency is low. There are two reasons: the repeated damage and repair of the SEI film on the surface of lithium metal during charging and discharging, which consumes lithium metal and shortens the battery life; the generation of irreversible "dead lithium" will also reduce the lithium metal battery capacity
However, the SEI film spontaneously formed by lithium anode and electrolyte has poor mechanical strength and slow ion transport rate, which cannot effectively inhibit dendrite growth, and is prone to structural rupture and regeneration, resulting in a decrease in battery Coulombic efficiency and cycle life.
In addition, the use of solid electrolytes also has a series of problems such as low room temperature ionic conductivity and large interface impedance, which are difficult to meet the application requirements of lithium metal batteries.

Method used

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  • A kind of lithium metal negative electrode and its preparation and application
  • A kind of lithium metal negative electrode and its preparation and application
  • A kind of lithium metal negative electrode and its preparation and application

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] Lithium discs with a diameter of 16mm (with a surface area of ​​2cm 2 ) was uniformly covered with 0.6 g of lithium bisfluorosulfonate imide, and then 0.2 g of DOL was added dropwise to form a polymer electrolyte layer with a thickness of 20 μm. The thickness of the solid lithium salt layer is 10 μm.

[0038] Using the battery assembly method in Comparative Example 2, it was assembled into a lithium symmetrical button battery, and the AC impedance test was performed, and the battery was tested at 1mA / cm 2 Current density and 1mAh / cm 2 The charge-discharge cycle test is carried out under the deposition and dissolution capacity; assembled into a lithium copper button battery, at 1mA / cm 2 Test the coulombic efficiency and cycle performance of lithium deposition and dissolution under current density conditions; assemble it into a lithium iron phosphate button battery, and test the cycle performance of the battery at a rate of 0.3C.

Embodiment 2

[0040] Lithium discs with a diameter of 16mm (with a surface area of ​​2cm 2) was uniformly covered with 0.6 g of lithium bisfluorosulfonate imide, and then 0.1 g of DOL was added dropwise to form a polymer electrolyte layer with a thickness of 15 μm. The thickness of the solid lithium salt layer is 15 μm

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Abstract

The invention relates to a lithium metal negative electrode and its preparation and application. The lithium metal negative electrode is based on lithium metal, and the surface facing the positive electrode is coated with a solid lithium salt layer and a polymer electrolyte layer in sequence, and is applied in a lithium metal battery. , will form an electrolyte system with a gradient distribution of lithium ion concentration from low to high from the positive electrode to the negative electrode. This electrolyte with gradient distribution of lithium ions can not only effectively solve the problems of low ionic conductivity and high interfacial contact resistance in solid electrolytes, but also effectively improve the poor stability of SEI films in liquid electrolytes, inhibit the growth of lithium dendrites, and improve the performance of lithium batteries. Cyclic stability has important practical application value.

Description

technical field [0001] The invention relates to the field of lithium metal batteries and belongs to the field of batteries. Background technique [0002] With the rapid development of the economy, people consume more and more energy, and the non-renewable resources are decreasing day by day, which makes the field of batteries get more and more attention. Among the existing batteries, lithium-ion batteries are the most researched. Although the energy density of lithium-ion batteries is higher than that of lead-acid and nickel-metal hydride batteries, it still cannot meet people's needs for higher energy densities. Therefore, researchers will focus on research transferred to lithium metal secondary batteries. The high specific capacity (3860mAh / g) and low reduction potential (-3.04V vs SHE) of lithium metal make it the most promising anode material for lithium metal secondary batteries. In metal lithium secondary batteries, the lithium anode is the main factor affecting the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M4/36H01M4/38H01M4/62H01M10/052H01M10/0565
CPCH01M4/366H01M4/382H01M4/628H01M10/052H01M10/0565H01M2004/027Y02E60/10
Inventor 张洪章陈雨晴李先锋张华民
Owner DALIAN INST OF CHEM PHYSICS CHINESE ACAD OF SCI
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