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Electrochemistry, ISSN 1344-3542, 01/2019, Volume 87, Issue 5, p. 246
Journal Article
ELECTROCHEMISTRY, ISSN 1344-3542, 2019, Volume 87, Issue 5, pp. 246 - 246
Journal Article
Chemical Communications : Chem Comm, ISSN 1359-7345, 01/2018, Volume 54, Issue 25, pp. 3178 - 3181
We report a battery made from a single material using Li1.5Cr0.5Ti1.5(PO4)3 as the anode, cathode and electrolyte. A high rate capability at room temperature... 
Ion currents | Lithium batteries | Lithium | Batteries
Journal Article
Journal of the Electrochemical Society, ISSN 0013-4651, 2011, Volume 158, Issue 10, pp. A1067 - A1070
Journal Article
Journal of Power Sources, ISSN 0378-7753, 09/2016, Volume 327, pp. 327 - 332
Aqueous sodium-ion battery is attractive, because of the low cost and the high safety. However, since the electrochemical window of the aqueous electrolyte is... 
Sodium iron pyrophosphate | Sodium-ion battery | Aqueous electrolyte | Sodium titanium phosphate
Journal Article
Journal of Power Sources, ISSN 0378-7753, 04/2013, Volume 227, pp. 80 - 85
The compounds Na M (PO ) F [M = Ti, Fe, V] were obtained by two-step solid-state synthesis, and its electrochemical properties as cathode active materials of... 
VASP | Na3M2(PO4)2F3 | Sodium-ion battery | Ex-situ XRD | PO
Journal Article
Journal of Power Sources, ISSN 0378-7753, 02/2014, Volume 247, pp. 391 - 395
The structure changes of iron disulfide (FeS ) during discharge/charge process were investigated by X-ray diffraction (XRD), X-ray photoelectron spectroscopy... 
Pyrite | Conversion reaction | Na-ion battery | XANES | FeS2 | FeS | ELECTROCHEMISTRY | ROOM-TEMPERATURE | SULFIDES | ENERGY & FUELS | RECHARGEABLE LITHIUM BATTERIES | Diffraction | X-rays | Charge | Iron | Electric batteries | Discharge | X-ray photoelectron spectroscopy | Cathodes
Journal Article
Journal of Power Sources, ISSN 0378-7753, 07/2019, Volume 429, p. 17
In pursuit to find stable economic anode for aqueous lithium-ion batteries, tavorite structured LiFePO.sub.4OH hydroxyphosphate has been investigated in... 
Phosphates | Electrolytes | Batteries
Journal Article
Journal of the Ceramic Society of Japan, ISSN 1882-0743, 2019, Volume 127, Issue 1, pp. 18 - 21
All-solid-state Li-ion battery is expected as the post Li-ion battery because of its high reliability and safety. However, the biggest issue for the... 
Li3BO3 | Single-phase all-solid-state battery | Li1.5Cr0.5Ti1.5(PO4)3 | Relative density | NASICON | Key-words: NASICON | PO | Lithium-ion batteries | Electrodes | Solid state | Electrochemical analysis | Ion currents | Electrolytes | Lithium batteries | Lithium | Solid electrolytes | Lithium borates | Product safety
Journal Article
Chemical Communications, ISSN 1359-7345, 2018, Volume 54, Issue 25, pp. 3178 - 3181
Journal Article
Nature Neuroscience, ISSN 1097-6256, 08/2004, Volume 7, Issue 8, pp. 887 - 893
Journal Article
Solid State Ionics, ISSN 0167-2738, 11/2018, Volume 326, p. 48
Although the synthesis is not so easy, LiFeSO.sub.4F, a high-voltage iron-based cathode, is attractive by virtue of its low cost and small environmental... 
Batteries
Journal Article
Solid State Ionics, ISSN 0167-2738, 11/2018, Volume 326, p. 48
Although the synthesis is not so easy, LiFeSO4F, a high-voltage iron-based cathode, is attractive by virtue of its low cost and small environmental impact. We... 
Iron sulfates | Electric potential | Lithium fluoride | Ball milling | Amorphous materials | Batteries | High voltages | Environmental impact | Rechargeable batteries | Lithium-ion batteries | Electrode materials | Composite materials | Sintering | Chemical synthesis | Cathodes
Journal Article
Journal of Power Sources, ISSN 0378-7753, 10/2014, Volume 264, pp. 235 - 239
P2-type Na Fe Mn O was prepared by means of solid-state reaction. Its electrochemical properties as a cathode for sodium-ion batteries were investigated in the... 
P2-type | Electrochemical properties | Sodium-ion battery | X-ray absorption spectroscopy | Thermal stability
Journal Article
Electrochimica Acta, ISSN 0013-4686, 11/2013, Volume 110, pp. 240 - 246
For sodium-ion battery, cathode properties of disodium rhodizonate, Na C O , were investigated. Unlike other organic active materials, Na C O exhibited good... 
Organic material | Disodium rhodizonate | Sodium-ion battery | ELECTROCHEMISTRY | POLYMERS | ANODE MATERIAL | TEREPHTHALATE | ELECTRODE | HIGH-CAPACITY | Electrolytic cells | Insertion | Electrolytes | Electric batteries | Carbon | Cathodes | Acetylene | Pellets
Journal Article
ISSN 1359-7345, 3/2018, Volume 54, Issue 25, pp. 3178 - 3181
We report a battery made from a single material using Li 1.5 Cr 0.5 Ti 1.5 (PO 4 ) 3 as the anode, cathode and electrolyte. A high rate capability at room... 
Journal Article
Electrochemistry, ISSN 1344-3542, 01/2015, Volume 83, Issue 10, pp. 909 - 909
The reconversion reaction of lithium fluoride (LiF)/iron (Fe) nanocomposite thin film cathodes prepared with the co-deposition method was investigated at room... 
Lithium-ion batteries | Thin films | Nanocomposites | Charge | Iron | Discharge | X-ray photoelectron spectroscopy | Cathodes
Journal Article
Journal of the Electrochemical Society, ISSN 0013-4651, 2010, Volume 157, Issue 6, pp. A748 - A752
Journal Article
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