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US Patent 12074313 Methods of forming lithium-silicon alloys for electrochemical cells

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
120743131
Patent Inventor Names
Zhongyi Liu1
Xiaosong Huang1
Date of Patent
August 27, 2024
1
Patent Application Number
170379861
Date Filed
September 30, 2020
1
Patent Citations
‌
US Patent 9005811 Phase separated silicon—tin composite as negative electrode material for lithium-ion and lithium sulfur batteries
1
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US Patent 9093705 Porous, amorphous lithium storage materials and a method for making the same
1
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US Patent 9142830 Phase separated silicon-tin composite as negative electrode material for lithium-ion batteries
1
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US Patent 9302914 Methods for making hollow carbon materials and active materials for electrodes
1
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US Patent 9362551 Reinforced battery electrodes
1
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US Patent 9379374 Methods for forming negative electrode active materials for lithium-based batteries
1
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US Patent 9531004 Multifunctional hybrid coatings for electrodes made by atomic layer deposition techniques
1
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US Patent 9570752 Negative electrode material for lithium-based batteries
1
...
Patent Primary Examiner
‌
Samir Shah
1
CPC Code
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B22F 2304/058
1
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H01M 4/13
1
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H01M 4/134
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H01M 4/1395
1
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H01M 4/38
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H01M 4/386
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H01M 10/05
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H01M 10/052
1
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Patent abstract

Methods for forming prelithiated electroactive materials are provided. Methods include preparing a precursor that includes lithium and silicon and centrifugally distributing the precursor using a centrifugal atomizing reactor. Methods for preparing the precursor include contacting a first mixture including lithium and having a first temperature and a second mixture including silicon and having a second temperature in a mixing chamber to form a precursor. The first mixture and the second mixture each enters the mixing chamber at a pressure greater than or equal to about 10 PSI. The second temperature is greater than the first temperature. Centrifugally distributing the precursor includes contacting the precursor with a rotating surface in a centrifugal atomizing reactor and solidifying the precursor to form a plurality of substantially round solid electroactive particles including lithium and silicon and having D50 diameters of less than or equal to about 30 micrometers.

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