Electrolytic synthesis of FeS2 for thin-layer lithium battery

Electrolytic synthesis of FeS2 for thin-layer lithium battery Purposeful synthesis of iron sulfide FeS2 films for a lithium battery were purposefully synthesized on a 18N12Kh9T steel cathode from a solution containing Mohr’s salt and Na2S2O3. Various aspects of synthesis were studied. Thin-film Fe-sulfide synthesis products were tested in a prototype lithium battery and also in a lithium-ion system. The synthesized electrolytic iron sulfide FeS2 with a marcasite structure is capable of reversible electrochemical transformation with output of 390 mA h g−1 in negative electrodes of the lithium-ion system with a LiMn2O4 counter electrode. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Russian Journal of Applied Chemistry Springer Journals

Electrolytic synthesis of FeS2 for thin-layer lithium battery

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Publisher
Springer Journals
Copyright
Copyright © 2014 by Pleiades Publishing, Ltd.
Subject
Chemistry; Chemistry/Food Science, general; Industrial Chemistry/Chemical Engineering
ISSN
1070-4272
eISSN
1608-3296
D.O.I.
10.1134/S1070427214070143
Publisher site
See Article on Publisher Site

Abstract

Purposeful synthesis of iron sulfide FeS2 films for a lithium battery were purposefully synthesized on a 18N12Kh9T steel cathode from a solution containing Mohr’s salt and Na2S2O3. Various aspects of synthesis were studied. Thin-film Fe-sulfide synthesis products were tested in a prototype lithium battery and also in a lithium-ion system. The synthesized electrolytic iron sulfide FeS2 with a marcasite structure is capable of reversible electrochemical transformation with output of 390 mA h g−1 in negative electrodes of the lithium-ion system with a LiMn2O4 counter electrode.

Journal

Russian Journal of Applied ChemistrySpringer Journals

Published: Oct 16, 2014

References

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