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Chemistry Letters, ISSN 0366-7022, 1/2018, Volume 47, Issue 1, pp. 13 - 15
Na10GeP2S12 glass and glass-ceramic were synthesized here for the first time via mechanical milling and subsequent heat treatment. The Na10GeP2S12 phase... 
Glass-ceramic | Solid electrolyte | All-solid-state sodium battery | SUPERIONIC CONDUCTOR | LITHIUM | BATTERIES | CHEMISTRY, MULTIDISCIPLINARY | Ion currents | Electrolytes | Heat treatment | Mechanical milling | Glass ceramics | Crystal structure
Journal Article
Journal of Power Sources, ISSN 0378-7753, 07/2014, Volume 258, pp. 420 - 423
Sulfide solid electrolytes with cubic Na PS phase has relatively high sodium ion conductivity of over 10 S cm at room temperature, and all-solid-state sodium... 
All-solid-state battery | Glass-ceramics | Sodium battery | Solid electrolyte | SOLID-ELECTROLYTE | STORAGE | ELECTROCHEMISTRY | LIQUID NAFSA-KFSA | ENERGY & FUELS | LITHIUM SECONDARY BATTERIES | NACRO2 | CHALLENGES | CATHODE | LICOO2
Journal Article
Journal of Materials Chemistry. A, Materials for Energy and Sustainability, ISSN 2050-7488, 01/2017, Volume 5, Issue 47, pp. 25025 - 25030
Solid sodium conductors are of great interest as electrolytes for all-solid sodium batteries and also for sodium–sulphur batteries. Here we provide the dynamic... 
X ray powder diffraction | Migration | X-ray diffraction | Molecular dynamics | Conductors | Batteries | Powder | Molten salt electrolytes | Diffraction | Sodium | Temperature effects | Solid electrolytes | Sulfur | Crystal structure
Journal Article
Journal of Power Sources, ISSN 0378-7753, 02/2015, Volume 275, pp. 284 - 287
All-solid-state sodium cells (Na15Sn4/Na3PS4 glass-ceramic/a-TiS3) showed a high capacity of over 300 mAh per gram of TiS3 at the 1st discharge–charge cycle.... 
Sulfide | All-solid-state battery | Amorphous electrode | TiS3 | Sodium battery | TiS | GLASS | ELECTROCHEMISTRY | ENERGY & FUELS | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | LITHIUM BATTERIES | CHEMISTRY, PHYSICAL
Journal Article
Solid State Ionics, ISSN 0167-2738, 07/2018, Volume 320, p. 193
Li.sub.4GeS.sub.4-substituted Li.sub.3PS.sub.4 crystals have high Li.sup.+ ion conductivities comparable to that of commercial organic electrolytes [Kamaya et... 
Electrolytes | Batteries | Ceramics | Ceramic materials | Electric properties
Journal Article
Solid State Ionics, ISSN 0167-2738, 07/2018, Volume 320, pp. 193 - 198
Li4GeS4-substituted Li3PS4 crystals have high Li+ ion conductivities comparable to that of commercial organic electrolytes [Kamaya et al., Nat. Mater. 10... 
Chalcogénides | Amorphous materials | Ionic conductivity | Chalcogenides | AUGMENTED-WAVE METHOD | PHYSICS, CONDENSED MATTER | SODIUM-ION CONDUCTIVITY | SUPERIONIC CONDUCTOR | CHEMISTRY, PHYSICAL | RAMAN | SOLID ELECTROLYTES | SPECTRA | BATTERIES
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2018, Volume 8, Issue 1, pp. 1 - 7
Sodium ion batteries meet the demand for large-scale energy storage, such as in electric vehicles, due to the material abundance of sodium. In this report,... 
ELECTRODE | ADOPTION | MULTIDISCIPLINARY SCIENCES | Sodium | Energy storage
Journal Article
Solid State Ionics, ISSN 0167-2738, 02/2015, Volume 270, pp. 6 - 9
Structures and ionic conductivities of the (100−x)Na3PS4∙xNaI (0≤x (mol%)≤33) glasses and glass-ceramics were investigated. In the XRD patterns, halo patterns... 
Sulfide | Glass-ceramic | Sodium ion conductor | Sodium iodide | Solid electrolyte | Glass | PHYSICS, CONDENSED MATTER | CERAMIC ELECTROLYTES | CHEMISTRY, PHYSICAL | CHALLENGES
Journal Article
Journal of Power Sources, ISSN 0378-7753, 02/2015, Volume 275, p. 284
All-solid-state sodium cells (Na.sub.15Sn.sub.4/Na.sub.3PS.sub.4 glass-ceramic/a-TiS.sub.3) showed a high capacity of over 300 mAh per gram of TiS.sub.3 at the... 
Batteries | Acetylene
Journal Article
Solid State Ionics, ISSN 0167-2738, 02/2015, Volume 270, p. 6
Structures and ionic conductivities of the (100-x)Na.sub.3PS.sub.4axNaI (0[less than or equal to]x (mol%)[less than or equal to]33) glasses and glass-ceramics... 
Raman spectroscopy | Methods | Electric properties
Journal Article
Solid State Ionics, ISSN 0167-2738, 11/2017, Volume 311, pp. 6 - 13
All-solid-state Na/S cells with high safety, capacity, and low material costs are desirable for smart grid systems. We report sulfur composite electrodes... 
All-solid-state battery | Sulfur electrode | Na/S battery | LI/S BATTERIES | ROOM-TEMPERATURE | PHYSICS, CONDENSED MATTER | CARBON | SODIUM BATTERIES | PERFORMANCE | LITHIUM BATTERIES | SUPERIONIC CONDUCTOR | CHEMISTRY, PHYSICAL | NA3PS4 | POSITIVE COMPOSITE ELECTRODE | GLASS-CERAMIC ELECTROLYTES | Electrodes | Sulfides | Electrolytes | X-ray spectroscopy | Batteries | Sulfur | Analysis
Journal Article
Journal of Materials Chemistry A, ISSN 2050-7488, 2017, Volume 5, Issue 47, pp. 25025 - 25030
Solid sodium conductors are of great interest as electrolytes for all-solid sodium batteries and also for sodium-sulphur batteries. Here we provide the dynamic... 
SYSTEM | REFINEMENT | AUGMENTED-WAVE METHOD | CHALCOGENIDES | NA2B12H12 | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | SUPERIONIC CONDUCTOR | DYNAMICS | CHEMISTRY, PHYSICAL | IONIC-CONDUCTIVITY | ELECTROLYTES
Journal Article
Journal of Power Sources, ISSN 0378-7753, 07/2014, Volume 258, p. 420
Sulfide solid electrolytes with cubic Na.sub.3PS.sub.4 phase has relatively high sodium ion conductivity of over 10.sup.-4 S cm.sup.-1 at room temperature, and... 
Sulfides | Electrolytes | Electric properties | Batteries | Ceramics | Ceramic materials
Journal Article
ISSN 2050-7488, 12/2017, Volume 5, Issue 47, pp. 2525 - 253
Solid sodium conductors are of great interest as electrolytes for all-solid sodium batteries and also for sodium-sulphur batteries. Here we provide the dynamic... 
Journal Article
ChemElectroChem, ISSN 2196-0216, 07/2014, Volume 1, Issue 7, pp. 1130 - 1132
Rietveld analysis of cubic Na3PS4 in the 94 Na3PS4⋅6 Na4SiS4 (mol %) glass ceramic indicates that two Na+ sites (Na1 and Na2) can be found in cubic Na3PS4 and... 
crystal structure analysis | conducting materials | sodium batteries | x‐ray diffraction | solid electrolytes
Journal Article
Chemistry of Materials, ISSN 0897-4756, 06/2017, Volume 29, Issue 12, pp. 5232 - 5238
Bulk-type all-solid-state Na/S cells, which are expected to have high capacity, be highly safe, and have low material cost, were fabricated using a Na3PS4... 
CELLS | OXIDE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | SODIUM-SULFUR BATTERIES | LITHIUM-ION BATTERIES | HIGH-CAPACITY | GLASS-CERAMIC ELECTROLYTES | CHALLENGES
Journal Article
04/2019, Volume 9, Issue 22, pp. 1259 - 12595
Solid electrolyte materials exhibiting high Mg-ion conductivity are required to develop Mg-ion batteries. In this study, we focused on a Mg-ion-conducting... 
Journal Article
ANALYTICAL CHEMISTRY, ISSN 0003-2700, 03/2020, Volume 92, Issue 5, pp. 3499 - 3502
Li metal electrode is the ultimate choice use in Li ion batteries as high-energy storage systems. An obstacle to its practical realization is Li dendrite... 
CHEMISTRY, ANALYTICAL | DENDRITIC GROWTH | ELECTROLYTE | INTERFACE | IMPEDANCE SPECTROSCOPY | MECHANISMS | ION TRANSFER | ANODE | LITHIUM | Salts | Storage systems | Metals | Lithium | Batteries | Laplace transforms | Storage batteries | Strong interactions (field theory) | Electrodes | Electrolytic cells | Solvation | Asymmetry | Electrolytes | Lithium ions | Dendritic structure | Energy storage
Journal Article
Science and Technology of Advanced Materials, ISSN 1468-6996, 01/2020, Volume 21, Issue 1, pp. 131 - 138
Solid electrolytes with high Mg-ion conductivity are required to develop solid-state Mg-ion batteries. The migration energies of the Mg 2+ ions of 5,576 Mg... 
401 1st principle calculations | 107 Glass and ceramic materials | density functional theory | 207 Fuel cells / Batteries / Super capacitors | Mg ion batteries | AC impedance spectra | solid electrolytes | high-throughput materials search | mg ion batteries | ac impedance spectra
Journal Article
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