Development of Novel Electrolytes for Use in High Energy Lithium‐Ion Batteries with Wide Operating Temperature Range.pptx
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ELECTROCHEMICAL TECHNOLOGIES GROUP
Development of Novel Electrolytes for Use in
High Energy Lithium‐Ion Batteries with Wide
Operating Temperature Range
Marshall C. Smart
B. V. Ratnakumar, W. C. West, L. D. Whitcanack, and F. C. Krause
Jet Propulsion Laboratory, California Institute of Technology
DOE‐BATT Review Meeting
Washington, D. C.
June 7, 2010
Project ID = ES026
This presentation does not contain any proprietary, confidential, or otherwise restricted information
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End Date = October 2014
Percent complete = 10%
– 875K total (~ 175K/year)
– Contractor share = 0K
• Funding received
FY’09 = 0 K
FY’10 = 175K
Overview
Timeline
Start Date = October 2009
Budget
• Total project funding
Barriers
• Barriers addressed
– Enhance low temperature performance
– Define performance limitations that limit life
– Develop long life systems stable at high voltage
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(Analysis of harvested electrodes, on-going collaborator)
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Argonne Nat. Lab (KhalilAmine)
(Source of electrodes, on-going collaborator)
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Material Methods, LBNL (John Kerr)
(Evaluation of novel salt, ex-situ analysis)
A123 Systems, Inc.
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(Electrolyte development, on-going collaborator)
Quallion, LCC.
(Electrolyte development, on-going collaborator)
Yardney Technical Products
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(Electrolyte development, on-going collaborator)
SaftAmerica, Inc.
(Collaborator, industrial partner under NASAprogram)
NREL (Smith/Pesaran)
(Supporting NREL in model development by supplying data)
ELECTROCHEMICAL TECHNOLOGIES GROUP
Partners
Univ. Rhode Island (Brett Lucht)
Month/Year
MilestoneorGo/No-GoDecision
March2010
Milestone:Prepare and characterize LiPF6‐based carbonate blend electrolytes containing
novel additives.
Sept2010
Milestone:Prepare and characterize experimental laboratory cells containing Gen‐1
electrolytes and identify performance limiting characteristics at different temperatures.
Sept.2010
Milestone:Demonstrate improved performa
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