SBIR-STTR Award

High Loading Lithium-Ion Electrode Architecture for Low Cost Electric Vehicle Batteries
Award last edited on: 8/11/2016

Sponsored Program
SBIR
Awarding Agency
DOE
Total Award Amount
$150,000
Award Phase
1
Solicitation Topic Code
17a
Principal Investigator
Bryan Ho

Company Information

Ballast Energy Inc

626 Bancroft Way Suite 3C
Berkeley, CA 94710
   (617) 671-0851
   info@ballastenergy.com
   www.ballastenergy.com
Location: Single
Congr. District: 13
County: Alameda

Phase I

Contract Number: DE-SC0013827
Start Date: 6/8/2015    Completed: 3/7/2016
Phase I year
2015
Phase I Amount
$150,000
The high cost of lithium-ion batteries is one of the major barriers to wider adoption of battery electric vehicles BEV). Lithium-ion cells add well over $5, 000 to the cost of a BEV and erode the price- competitiveness of this zero emission alternative to gasoline powered vehicles. Ballast Energy is applying hierarchical pore structures in lithium-ion electrodes to reduce materials costs and manufacturing overhead production of lithium-ion cells. Enhanced lithium ion mass transport kinetics across the cathode and anode allow for higher active material loadings on the electrodes, while maintaining efficient power delivery from the battery cell. Materials savings are realized with reduced current collector foil and separator requirements and increased throughput in the production process results in lower manufacturing overheads. This work will investigate the feasibility of meeting the demanding energy and power density targets for BEV cells with Ballast Energys cost reduction technology. Successful development of this technology will benefit the rapidly growing market for electric vehicles. Lower cost lithium-ion cells will benefit the ecosystem of cell manufacturers, automotive manufacturers, and suppliers of electric drive components as overall adoption rates for BEVs rise. Moving toward vehicle electrification provides long term societal benefits in reducing greenhouse gas emissions from human activity.

Phase II

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Start Date: 00/00/00    Completed: 00/00/00
Phase II year
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Phase II Amount
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