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Journal of Power Sources, ISSN 0378-7753, 07/2014, Volume 258, pp. 266 - 271
Electrochemistry and structural evolution of monoclinic NaNiO as a cathode material for Na-ion battery is reported. The initial charge capacity reached 160 mA... 
In situ XRD techniques | NaNiO | Na-ion cathode | Intercalation/deintercalation mechanism | ELECTROCHEMISTRY | SODIUM | OXIDE | NaNiO2 | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NA-ION BATTERIES | INTERCALATION | CATHODE | SYSTEMS | DEINTERCALATION | BRONZES
Journal Article
Energy and Environmental Science, ISSN 1754-5692, 2014, Volume 7, Issue 4, pp. 1387 - 1391
Earth-abundant Na-0.67[Mn1-xMgx] O-2 (0 <= x <= 0.2) cathode materials with the P2 structure have been synthesized as positive electrodes for sodium-ion... 
ENGINEERING, CHEMICAL | PHASES | ENVIRONMENTAL SCIENCES | ELECTROLYTE | ENERGY & FUELS | ENERGY-STORAGE | CHEMISTRY, MULTIDISCIPLINARY | CHALLENGES | ELECTROCHEMICAL INTERCALATION | DEINTERCALATION | BRONZES
Journal Article
Energy and Environmental Science, ISSN 1754-5692, 3/2012, Volume 5, Issue 3, pp. 5884 - 591
Energy production and storage have become key issues concerning our welfare in daily life. Present challenges for batteries are twofold. In the first place,... 
ELECTROCHEMICAL PROPERTIES | ANODE MATERIALS | OXIDATIVE DEINTERCALATION | ENERGY & FUELS | CRYSTAL-STRUCTURE | ELECTRICAL-PROPERTIES | LITHIUM-INSERTION | CHEMISTRY, MULTIDISCIPLINARY | CATHODE MATERIAL | ENGINEERING, CHEMICAL | ENVIRONMENTAL SCIENCES | POSITIVE ELECTRODE | SODIUM-ION | NASICON THIN-FILMS
Journal Article
Electrochemistry, ISSN 1344-3542, 10/2012, Volume 80, Issue 10, pp. 716 - 719
Single phase, well-crystallized O3-type NaFeO2 (alpha NaFeO2) is prepared by a solid-state method. Electrode performance of O3-type NaFeO2 is examined as... 
Iron oxides | Sodium insertion | Sodium batteries | ELECTROCHEMISTRY | Iron Oxides | Sodium Batteries | Sodium Insertion | ELECTROCHEMICAL INTERCALATION | DEINTERCALATION
Journal Article
Journal of the Electrochemical Society, ISSN 0013-4651, 2011, Volume 158, Issue 12, pp. A1307 - A1312
Monoclinic alpha- NaMnO2 is re-investigated electrochemically as a positive electrode material for sodium ion batteries. About 0.85 Na can be deintercalated... 
X LESS | IRON-OXIDE | TRANSITION | ELECTROCHEMISTRY | STRUCTURAL-CHARACTERIZATION | LAYERED LIMNO2 | PHASE-STABILITY | LITHIUM | MATERIALS SCIENCE, COATINGS & FILMS | ELECTRONIC-STRUCTURE | DEINTERCALATION | BRONZES
Journal Article
International Journal of Solids and Structures, ISSN 0020-7683, 2010, Volume 47, Issue 10, pp. 1424 - 1434
Recent advances in lithium-ion battery electrodes with huge volume changes during intercalation–deintercalation cycles are calling for studies on crack... 
Lithium electrodes | Fracture | Flaw tolerance | Intercalation–deintercalation | Diffusion induced stress | Cohesive zone | Intercalation-deintercalation | CAPACITY | PARTICLE | SILICON | ION | ALLOY ANODES | NANOCOMPOSITES | MECHANICS | GERMANIUM | LITHIUM INSERTION | Electrodes | Cohesion | Fracture mechanics | Battery | Mathematical models | Nanostructure | Diffusion | Crack initiation
Journal Article
NATURE MATERIALS, ISSN 1476-1122, 01/2011, Volume 10, Issue 1, pp. 74 - U3
Sodium layered oxides NaxCoO(2) form one of the most fascinating low-dimensional and strongly correlated systems; in particular P2-NaxCoO2 exhibits various... 
SYSTEM | PHYSICS, CONDENSED MATTER | SODIUM | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | INTERCALATION | COO2 | ENHANCEMENT | NAXCOO2 | THERMOPOWER | COBALTATE | DEINTERCALATION | BRONZES | Materials science | Sodium | Electricity | Chemical engineering | Phase transitions | Material chemistry | Chemical Sciences
Journal Article
Energy and Environmental Science, ISSN 1754-5692, 01/2015, Volume 8, Issue 1, pp. 195 - 202
We report on layered NaTiO2 as a potential anode material for Na-ion batteries. The material is prepared from only earth-abundant elements, delivers 152 mA h... 
ENERGY | MECHANISM | ENERGY & FUELS | CHEMISTRY, MULTIDISCIPLINARY | ENGINEERING, CHEMICAL | ENVIRONMENTAL SCIENCES | SUPERSTRUCTURE | NEGATIVE ELECTRODES | SYSTEMS | DIFFUSION | PHASE-DIAGRAM | ELECTROCHEMICAL INTERCALATION | BRONZES | DEINTERCALATION
Journal Article
NATURE MATERIALS, ISSN 1476-1122, 06/2012, Volume 11, Issue 6, pp. 512 - 517
Rechargeable lithium batteries have risen to prominence as key devices for green and sustainable energy development. Electric vehicles, which are not equipped... 
PHYSICS, CONDENSED MATTER | SODIUM | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | ELECTRODES | CHEMISTRY, PHYSICAL | ELECTROCHEMICAL INTERCALATION | DEINTERCALATION
Journal Article
Physical Chemistry Chemical Physics, ISSN 1463-9076, 03/2013, Volume 15, Issue 9, pp. 3304 - 3312
Journal Article
Small, ISSN 1613-6810, 12/2012, Volume 8, Issue 24, pp. 3752 - 3756
Journal Article
Nano Letters, ISSN 1530-6984, 03/2018, Volume 18, Issue 3, pp. 1758 - 1763
Rechargeable aqueous zinc-ion batteries are highly desirable for grid-scale applications due to their low cost and high safety; however, the poor cycling... 
1.63H | single-nanowire battery | zinc ion intercalation and deintercalation | Aqueous zinc-ion battery | nanowire
Journal Article
ISSN 1754-5692, 12/2014, Volume 8, Issue 1, pp. 81 - 12
The room temperature Na-ion secondary battery has been under focus lately due to its feasibility to compete against the already well-established Li-ion... 
Journal Article
Energy and Environmental Science, ISSN 1754-5692, 01/2015, Volume 8, Issue 1, pp. 81 - 102
The room temperature Na-ion secondary battery has been under focus lately due to its feasibility to compete against the already well-established Li-ion... 
ENERGY | ELECTROCHEMICAL PROPERTIES | ENERGY & FUELS | PERFORMANCE | INTERCALATION COMPOUND | CHEMISTRY, MULTIDISCIPLINARY | HIGH-CAPACITY CATHODE | IRON-OXIDE | ENGINEERING, CHEMICAL | ENVIRONMENTAL SCIENCES | POSITIVE ELECTRODE | THERMAL-PROPERTIES | X LESS-THAN | DEINTERCALATION
Journal Article
CHEMISTRY OF MATERIALS, ISSN 0897-4756, 04/2015, Volume 27, Issue 7, pp. 2515 - 2524
Batteries based on sodium layered transition metal oxides are a promising alternative to current state-of-the-art lithium-ion systems for large-scale energy... 
OXIDE | REDUCTION | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | SODIUM-ION BATTERIES | POWDER DIFFRACTION | CHEMISTRY, PHYSICAL | PEROVSKITE | HIGH-CAPACITY | CATHODE MATERIAL | ELECTROCHEMICAL INTERCALATION | DEINTERCALATION
Journal Article
Nature Communications, ISSN 2041-1723, 01/2015, Volume 6, Issue 1, p. 6045
LiFePO4 is one of the most frequently studied positive electrode materials for lithium-ion batteries during the last years. Nevertheless, there is still an... 
TRANSITION | MISCIBILITY GAP | TRANSPORT | LITHIUM DEINTERCALATION | ZONE | MULTIDISCIPLINARY SCIENCES | DEFECT CHEMISTRY | ELECTRODE | FEPO4 | LIXFEPO4
Journal Article
International Journal of Solids and Structures, ISSN 0020-7683, 2011, Volume 48, Issue 16, pp. 2304 - 2309
We have recently modeled crack nucleation in a 2D strip electrode as localization of a periodic array of cohesive zones subject to diffusion induced stresses... 
Diffusion-induced stress | Flaw tolerance | Intercalation–deintercalation | Lithium electrodes | Nanowire | Fracture | Cohesive zone | Intercalation-deintercalation | MECHANICS | EVOLUTION | INTERCALATION-INDUCED STRESS | GENERATION | ELECTROCHEMICAL LITHIATION | Analysis | Models | Fractures | Electrodes | Stresses | Strip | Cohesion | Fracture mechanics | Diffusion | Two dimensional | Crack initiation
Journal Article
Accounts of Chemical Research, ISSN 0001-4842, 11/2018, Volume 51, Issue 11, pp. 2918 - 2925
Conspectus Ages of history are defined by the underlying materials that promoted human development: stone, bronze, and iron ages. Since the middle of the last... 
MAGNETORESISTANCE | ANION | SPIN | INSULATOR | LOW-TEMPERATURE SYNTHESIS | ION | ELECTRODE | PEROVSKITES | CHEMISTRY, MULTIDISCIPLINARY | SUPERCONDUCTORS | DEINTERCALATION
Journal Article