Invention Grant
US09543054B2 Method of fabricating electrodes including high-capacity, binder-free anodes for lithium-ion batteries
有权
制造电极的方法,包括用于锂离子电池的高容量,无粘合剂的阳极
- Patent Title: Method of fabricating electrodes including high-capacity, binder-free anodes for lithium-ion batteries
- Patent Title (中): 制造电极的方法,包括用于锂离子电池的高容量,无粘合剂的阳极
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Application No.: US13672486Application Date: 2012-11-08
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Publication No.: US09543054B2Publication Date: 2017-01-10
- Inventor: Chunmei Ban , Zhuangchun Wu , Anne C. Dillon
- Applicant: Alliance for Sustainable Energy, LLC
- Applicant Address: US CO Golden
- Assignee: Alliance for Sustainable Energy, LLC
- Current Assignee: Alliance for Sustainable Energy, LLC
- Current Assignee Address: US CO Golden
- Agent Michael A. McIntyre
- Main IPC: H01B1/04
- IPC: H01B1/04 ; H01M4/485 ; H01B1/00 ; H01M4/48 ; H01B1/08 ; H01M4/52 ; B01J19/08 ; H01M4/04 ; H01M4/62 ; H01M4/131 ; H01M10/0525 ; H01M4/02 ; B82Y30/00

Abstract:
An electrode (110) is provided that may be used in an electrochemical device (100) such as an energy storage/discharge device, e.g., a lithium-ion battery, or an electrochromic device, e.g., a smart window. Hydrothermal techniques and vacuum filtration methods were applied to fabricate the electrode (110). The electrode (110) includes an active portion (140) that is made up of electrochemically active nanoparticles, with one embodiment utilizing 3d-transition metal oxides to provide the electrochemical capacity of the electrode (110). The active material (140) may include other electrochemical materials, such as silicon, tin, lithium manganese oxide, and lithium iron phosphate. The electrode (110) also includes a matrix or net (170) of electrically conductive nanomaterial that acts to connect and/or bind the active nanoparticles (140) such that no binder material is required in the electrode (110), which allows more active materials (140) to be included to improve energy density and other desirable characteristics of the electrode. The matrix material (170) may take the form of carbon nanotubes, such as single-wall, double-wall, and/or multi-wall nanotubes, and be provided as about 2 to 30 percent weight of the electrode (110) with the rest being the active material (140).
Public/Granted literature
- US20130065130A1 METHOD OF FABRICATING ELECTRODES INCLUDING HIGH-CAPACITY, BINDER-FREE ANODES FOR LITHIUM-ION BATTERIES Public/Granted day:2013-03-14
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