FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS
The nature of protective surface layers formed on lithium in propylene carbonate solutions of LiClO{sub 4} and LiAsF{sub 6} at open circuit has been investigated by electrochemical pulse measurements. The results are consistent with the fastformation of a compact thin layer resulting from the reacti...
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ftosti:oai:osti.gov:1022096 2023-07-30T04:02:55+02:00 FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS Geronov, Y. Schwager, F. Muller, R.H. 2011-09-22 application/pdf http://www.osti.gov/servlets/purl/1022096 https://www.osti.gov/biblio/1022096 unknown http://www.osti.gov/servlets/purl/1022096 https://www.osti.gov/biblio/1022096 99 CARBONIC ACID ESTERS CORROSION LITHIUM WATER 2011 ftosti 2023-07-11T08:50:22Z The nature of protective surface layers formed on lithium in propylene carbonate solutions of LiClO{sub 4} and LiAsF{sub 6} at open circuit has been investigated by electrochemical pulse measurements. The results are consistent with the fastformation of a compact thin layer resulting from the reaction with residual water. This layer acts as a solid ionicconductor. Slow corrosion or decomposition processes produce a thicker porous overlayer. Other/Unknown Material Carbonic acid SciTec Connect (Office of Scientific and Technical Information - OSTI, U.S. Department of Energy) |
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SciTec Connect (Office of Scientific and Technical Information - OSTI, U.S. Department of Energy) |
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ftosti |
language |
unknown |
topic |
99 CARBONIC ACID ESTERS CORROSION LITHIUM WATER |
spellingShingle |
99 CARBONIC ACID ESTERS CORROSION LITHIUM WATER Geronov, Y. Schwager, F. Muller, R.H. FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS |
topic_facet |
99 CARBONIC ACID ESTERS CORROSION LITHIUM WATER |
description |
The nature of protective surface layers formed on lithium in propylene carbonate solutions of LiClO{sub 4} and LiAsF{sub 6} at open circuit has been investigated by electrochemical pulse measurements. The results are consistent with the fastformation of a compact thin layer resulting from the reaction with residual water. This layer acts as a solid ionicconductor. Slow corrosion or decomposition processes produce a thicker porous overlayer. |
author |
Geronov, Y. Schwager, F. Muller, R.H. |
author_facet |
Geronov, Y. Schwager, F. Muller, R.H. |
author_sort |
Geronov, Y. |
title |
FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS |
title_short |
FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS |
title_full |
FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS |
title_fullStr |
FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS |
title_full_unstemmed |
FILM FORMATION ON LITHIUM IN PROPYLENE CARBONATE SOLUTIONS UNDER OPEN CIRCUIT CONDITIONS |
title_sort |
film formation on lithium in propylene carbonate solutions under open circuit conditions |
publishDate |
2011 |
url |
http://www.osti.gov/servlets/purl/1022096 https://www.osti.gov/biblio/1022096 |
genre |
Carbonic acid |
genre_facet |
Carbonic acid |
op_relation |
http://www.osti.gov/servlets/purl/1022096 https://www.osti.gov/biblio/1022096 |
_version_ |
1772813783470702592 |