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A kind of protection method and product of lithium metal/sodium metal negative electrode

A lithium anode and sodium metal technology, applied in the field of lithium metal/sodium metal battery anode materials and electrochemistry, can solve the problems that limit the popularity of process applications and large-scale commercialization, the unsafe operation and storage of metal lithium, and the inability to apply surface Modification technology and other problems, to achieve the effect of uniform and dense interface modification layer, inhibition of repeated formation and cracking, and low price

Active Publication Date: 2020-11-17
HUAZHONG UNIV OF SCI & TECH +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0007] However, at present, there are still deficiencies and challenges in the construction technology of the interface modification layer, mainly because the key step of the above-mentioned process involves the direct manipulation of lithium, and metal lithium has ultra-high chemical reactivity, which is very easy to mix with most atmospheres or The reagent reacts and releases a large amount of heat or explosive gas such as hydrogen, which brings great unsafety and complexity to the operation and storage of metal lithium
Not only is there a high degree of selectivity to atmosphere and reagents, but it also involves high-priced ultra-pure and high-dry reagents and equipment, which greatly limits the application popularity and large-scale commercialization of this type of process.
In addition, many material systems can be used as modification materials for the lithium anode interface according to their own composition and structure, but due to the incompatibility of the building atmosphere and reagents to lithium, they cannot be applied to the existing surface modification technology.

Method used

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  • A kind of protection method and product of lithium metal/sodium metal negative electrode
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  • A kind of protection method and product of lithium metal/sodium metal negative electrode

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specific Embodiment

[0044] In order to illustrate the inventive method in more detail, the specific embodiment is provided below in tabular form as follows:

[0045]

[0046]

[0047]

[0048]

[0049] The performance of the lithium metal / sodium metal negative electrode containing the interface modification layer obtained after the construction of the interface modification layer mentioned in the present invention can be optimized to varying degrees. Specifically, the interface modification layer can effectively isolate the gap between the metal negative electrode and the electrolyte. Due to the side reactions caused by direct contact, the coulombic efficiency of the battery can be increased to 90% or above, the cycle life can be increased to hundreds to thousands of cycles, and the deposition morphology is smoother. In addition, choosing different interface layer materials such as high elastic modulus materials such as black phosphorus, graphene, boron nitride, etc. can effectively in...

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Abstract

The invention discloses a lithium metal / sodium metal negative electrode protection method and a product, which belong to the field of lithium metal / sodium metal battery negative electrode materials and electrochemistry. In any atmosphere, a type of interface modification material is pre-constructed on the battery separator. A prefabricated diaphragm is obtained, the interaction between the interface modification material and the lithium negative electrode is stronger than that of the diaphragm, and the battery assembly process is performed, wherein the side of the prefabricated diaphragm with the interface modification material is closely attached to the metal lithium negative electrode, and the electrolyte is injected. Under the infiltration of the electrolyte, the interface modification material spontaneously transfers from the separator to the surface of the lithium metal negative electrode by utilizing the physical and chemical interaction between the interface modification material and the lithium metal, thereby automatically realizing the protection of the lithium metal negative electrode. The same principle approach can also be applied to sodium metal batteries. The method of the invention does not need to directly operate the lithium negative electrode or the sodium negative electrode, and is safe, reliable, simple in process, wide in application conditions, strong in manufacturability and good in actual effect.

Description

technical field [0001] The invention belongs to the field of lithium metal / sodium metal battery negative electrode materials and electrochemistry, and specifically relates to a surface modification technology and product of a lithium negative electrode of a lithium metal battery or a sodium negative electrode of a sodium metal battery. Background technique [0002] With the continuous development of industry, the combustion of traditional fossil fuels produces a large amount of harmful gases and smoke, which not only seriously affects the natural and social environment, but also poses a huge threat to the human living environment. Therefore, the development of renewable clean energy has become a top priority. Lithium-ion batteries are widely used in portable electronic products due to their advantages such as wide operating voltage, high discharge capacity, stable discharge, and environmental friendliness. [0003] In recent years, with the increasing rise of electric vehic...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M10/058H01M10/052H01M10/054
CPCH01M10/052H01M10/054H01M10/058Y02E60/10Y02P70/50
Inventor 李会巧郭雁鹏李典翟天佑
Owner HUAZHONG UNIV OF SCI & TECH
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