Rock-salt-type lithium metal sulphides as novel positive-electrode materials
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H. Sakaebe | Z. Ogumi | A. Sakuda | T. Takeuchi | K. Tatsumi | K. Okamura | H. Kobayashi
[1] A. Hayashi,et al. Glass Electrolytes with High Ion Conductivity and High Chemical Stability in the System LiI-Li2O-Li2S-P2S5 , 2013 .
[2] H. Sakaebe,et al. Amorphous TiS4 positive electrode for lithium–sulfur secondary batteries , 2013 .
[3] A. Hayashi,et al. Amorphous Titanium Sulfide Electrode for All-solid-state Rechargeable Lithium Batteries with High Capacity , 2012 .
[4] A. Hayashi,et al. Preparation of amorphous TiSx thin film electrodes by the PLD method and their application to all-solid-state lithium secondary batteries , 2012, Journal of Materials Science.
[5] S. Ujiie,et al. Structure, ionic conductivity and electrochemical stability of Li2S–P2S5–LiI glass and glass–ceramic electrolytes , 2012 .
[6] Jean-Marie Tarascon,et al. Li-O2 and Li-S batteries with high energy storage. , 2011, Nature materials.
[7] Jean-Marie Tarascon,et al. Reactivity of transition metal (Co, Ni, Cu) sulphides versus lithium: The intriguing case of the copper sulphide , 2006 .
[8] A. Benayad,et al. XPS investigations of TiOySz amorphous thin films used as positive electrode in lithium microbatteries , 2005 .
[9] Glenn G. Amatucci,et al. Carbon Metal Fluoride Nanocomposites High-Capacity Reversible Metal Fluoride Conversion Materials as Rechargeable Positive Electrodes for Li Batteries , 2003 .
[10] S. Kondo,et al. Electrochemical Reduction of Li2FeS2 in Solid Electrolyte , 2001 .
[11] Sylvie Grugeon,et al. Nano‐Sized Transition‐Metal Oxides as Negative‐Electrode Materials for Lithium‐Ion Batteries. , 2001 .
[12] F. Izumi,et al. A Rietveld-Analysis Programm RIETAN-98 and its Applications to Zeolites , 2000 .
[13] G. Nolze,et al. POWDER CELL– a program for the representation and manipulation of crystal structures and calculation of the resulting X‐ray powder patterns , 1996 .
[14] C. Delmas,et al. ω-LixV2O5 — a new electrode material for rechargeable lithium batteries☆ , 1991 .
[15] G. Ouvrard,et al. Transition-metal dichalcogenides from disintercalation processes. Crystal structure determination and Mossbauer study of Li2FeS2 and its disintercalates LixFeS2 (0.2⩽x⩽2) , 1987 .
[16] D. Murphy,et al. Preparation and chemical and physical properties of the new layered phases Li x Ti 1 − y M y S 2 with M = V , C r , o r F e , 1983 .
[17] M. Stanley Whittingham,et al. Chemistry of intercalation compounds: Metal guests in chalcogenide hosts , 1978 .
[18] G. Holleck,et al. TRANSITION METAL SULFIDES AS CATHODES FOR SECONDARY LITHIUM BATTERIES. II. TITANIUM SULFIDES , 1977 .
[19] G. Holleck,et al. Transition metal sulfides as cathodes for secondary lithium batteries—II. titanium sulfides , 1977 .
[20] M. Stanley Whittingham,et al. The Role of Ternary Phases in Cathode Reactions , 1976 .