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Method of coating electroactive materials with conductive polymers

專利號(hào)
US11996553B2
公開日期
2024-05-28
申請(qǐng)人
GM GLOBAL TECHNOLOGY OPERATIONS LLC(US MI Detroit)
發(fā)明人
Gongshin Qi; Jiazhi Hu
IPC分類
H01M4/36; H01M4/04; H01M4/38; H01M4/525; H01M4/583; H01M4/62; H01M10/0525; H01M4/02
技術(shù)領(lǐng)域
equal,lithium,or,about,optionally,electrode,than,percent,conductive,weight
地域: MI MI Detroit

摘要

The present disclosure provides a method of preparing a coated electroactive material. The method includes providing a plurality of particles including an electroactive material. The method further includes coating the plurality of particles with a conductive polymer. The coating includes preparing a solution of water and the conductive polymer. The coating further includes forming a slurry by combining the solution with the plurality of particles. The method further includes drying the slurry to form the coated electroactive material. The coated electroactive material includes the plurality of particles. Each of the plurality of particles is at least partially coated with the conductive polymer. In certain aspects, the present disclosure provides a method of preparing an electrode including the coated electroactive material.

說明書

The lithium-ion battery 20 can generate an electric current during discharge by way of reversible electrochemical reactions that occur when the external circuit 40 is closed (to electrically connect the negative electrode 22 and the positive electrode 24) when the negative electrode 22 contains a relatively greater quantity of cyclable lithium. The chemical potential difference between the positive electrode 24 and the negative electrode 22 drives electrons produced by the oxidation of lithium (e.g., intercalated/alloyed/plated lithium) at the negative electrode 22 through the external circuit 40 toward the positive electrode 24. Lithium ions, which are also produced at the negative electrode, are concurrently transferred through the electrolyte 30 and porous separator 26 towards the positive electrode 24. The electrons flow through the external circuit 40 and the lithium ions migrate across the porous separator 26 in the electrolyte 30 to intercalate/alloy/plate into a positive electroactive material of the positive electrode 24. The electric current passing through the external circuit 40 can be harnessed and directed through the load device 42 until the lithium in the negative electrode 22 is depleted and the capacity of the lithium-ion battery 20 is diminished.

權(quán)利要求

1
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