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US Patent 7722991 High performance anode material for lithium-ion battery

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Is a
Patent
Patent
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Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
77229910
Patent Inventor Names
Pu Zhang0
Kimber L. Stamm0
Liya Wang0
Monique Richard0
Shih-Chieh Yin0
Shoji Yokoishi0
Suresh Mani0
Wen Li0
...
Date of Patent
May 25, 2010
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Patent Application Number
114633940
Date Filed
August 9, 2006
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Patent Citations Received
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US Patent 12084549 Preparation of polymeric resins and carbon materials
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US Patent 11661517 Methods for sol-gel polymerization in absence of solvent and creation of tunable carbon structure from same
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US Patent 11688849 Electroactive materials for metal-ion batteries
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US Patent 11695110 Electroactive materials for metal-ion batteries
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US Patent 11707728 Carbon-based compositions with highly efficient volumetric gas sorption
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US Patent 11715824 Electroactive materials for metal-ion batteries
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US Patent 11804591 Highly efficient manufacturing of silicon-carbon composite materials comprising ultra low Z
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US Patent 11905593 Process for preparing electroactive materials for metal-ion batteries
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...
Patent Primary Examiner
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Joseph Patrick Ryan
0
Patent abstract

An anode material with lithium-alloying particles contained within a porous support matrix is provided. The porous support matrix preferably has a porosity of between 5 and 80% afforded by porosity channels and expansion accommodation pores, and is electrically conductive. More preferably the support matrix has a porosity of between 10 and 50%. The support matrix is made from an organic polymer, an inorganic ceramic or a hybrid mixture of organic polymer and inorganic ceramic. The organic polymer support matrix and can be made from a rod-coil polymer, a hyperbranched polymer, UV cross-linked polymer, heat cross-linked polymer or combination thereof. An inorganic ceramic support matrix can be made from at least one group IV-VI transition metal compound, with the compound being a nitride, carbide, oxide or combination thereof. The lithium-alloying particles are preferably nanoparticles with a mean linear dimension of between 5 and 500 nanometers, and more preferably have a mean linear dimension of between 5 and 50 nanometers.

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