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Long cycle life rechargeable lithium batteriesCycle life and safety of delta-LiAl/TiS2 cells were evaluated using laboratory and AA-size cells. Analysis of the alloys (which contained 60, 70, 80, or 85 wt-pct. lithium and are designated 60 LiAl etc.) showed them to contain a mixture of elemental Li and Al4Li9. Cycling efficiencies correlated with the amount of free lithium in the anode. Using an electrolyte with the composition 48 v/o THF:48 v/o 2-MeTHF:4 v/o 2-MeF/LiAsF6(1.5M), a 70 LiAl/TiS2 laboratory cell yielded a cycling efficiency of 96.4 pct. when cycled at a 100 pct. discharge depth which compares well with Li anode cycling efficiencies of 96 to 97.5 pct. obtained previously in this electrolyte. The highest cycling efficiency of any delta-LiAl/TiS2 laboratory cell was 96.7 pct. when the 60 LiAl alloy was used with the 35 v/o PC:35 v/o EC:30 v/o triglyme/LiAsF6(1.0M) electrolyte. The 70 LiAl alloy was selected for further testing in AA cells since it was malleable for the fabrication of spirally wound electrodes, and its overall cycling performance was sufficiently good. AA-size 70 LiAl/TiS2 cells appear to have capacity/rate properties similar to those for identical Li/TiS2 cells. The use of the delta-LiAl alloy anodes does not appear to offer any safety advantage when cycled cells are shorted or heated.
Document ID
19930002416
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Pasquariello, D. M.
(EIC, Inc. Norwood, MA, United States)
Willstaedt, E. B.
(EIC, Inc. Norwood, MA, United States)
Abraham, K. M.
(EIC, Inc. Norwood, MA, United States)
Date Acquired
September 6, 2013
Publication Date
October 19, 1992
Subject Category
Electronics And Electrical Engineering
Report/Patent Number
NAS 1.26:190937
REPT-89063
NASA-CR-190937
Accession Number
93N11604
Funding Number(s)
CONTRACT_GRANT: NAS7-1100
CONTRACT_GRANT: SBIR-10.02-9450
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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