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Journal of materials chemistry. A, Materials for energy and sustainability, ISSN 2050-7488, 08/2015, Volume 3, Issue 33, pp. 16971 - 16977
Due to their highly reversible capacity, tin-sulfide-based materials have gained attention as potential anodes for sodium-ion and lithium-ion batteries.... 
Electrolytic cells | Transmission electron microscopy | Mechanical milling | Renewable energy | Graphene | Oxides | Carbon | Anodes
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2018, Volume 394, pp. 114 - 121
A urea-based hydrothermal approach has been applied to synthesize LiNi Co Mn O (NCM523) cathode materials with focus on investigating the influence of the... 
Lithium-ion battery | Hydrothermal synthesis | Cathode | LiNi0.5Co0.2Mn0.3O2 | LiNi
Journal Article
Journal of The Electrochemical Society, ISSN 0013-4651, 2019, Volume 166, Issue 3, pp. A5184 - A5186
Journal Article
Chemistry of Materials, ISSN 0897-4756, 01/2014, Volume 26, Issue 2, pp. 1260 - 1269
Li-substituted layered P2–Na0.80[Li0.12Ni0.22Mn0.66]O2 is investigated as an advanced cathode material for Na-ion batteries. Both neutron diffraction and... 
Journal Article
Chemical Communications, ISSN 1359-7345, 10/2014, Volume 50, Issue 83, pp. 12564 - 12567
An in-depth understanding of Na2Ti3O7 as a Na-ion battery anode is reported. The battery performance is enhanced by carbon coating, due to increased electronic... 
SODIUM INSERTION | SPECTROSCOPY | X-RAY-ABSORPTION | ELECTRODES | ENERGY-STORAGE | ELECTROCHEMICAL NA | HIGH-CAPACITY | LITHIUM | INTERCALATION | CHEMISTRY, MULTIDISCIPLINARY
Journal Article
Journal of the Electrochemical Society, ISSN 0013-4651, 2019, Volume 166, Issue 3, pp. A5184 - A5186
Electrode/electrolyte interphase in Li-ion batteries is a critical component that ensures reversible cell reactions far from thermodynamic equilibria. The... 
ELECTROCHEMISTRY | SOLID-ELECTROLYTE INTERPHASE | STABILITY | PERFORMANCE | GRAPHITE | ANODES | SAFE | INTERCALATION | MATERIALS SCIENCE, COATINGS & FILMS | LITHIUM-ION
Journal Article
Nano Energy, ISSN 2211-2855, 04/2016, Volume 22, pp. 475 - 482
Three-dimensional self-supported cathode nanoarchitectures are the key to develop high-performance thin film lithium-ion microbatteries and flexible... 
Self-standing | Flexible lithium-ion batteries | Cathode | 3D microbatteries | Porous | POWER-DENSITY | PHYSICS, APPLIED | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | ELECTRODES | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | NANOSTRUCTURES | NANOTUBE | ENERGY-STORAGE | RATE CAPABILITY | ANODE | THIN-FILM | ARCHITECTURES
Journal Article
ACS Applied Materials and Interfaces, ISSN 1944-8244, 08/2015, Volume 7, Issue 30, pp. 16231 - 16239
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
Journal of Power Sources, ISSN 0378-7753, 06/2012, Volume 207, pp. 166 - 172
Anatase titanium dioxide is a promising negative electrode material for Li-ion batteries. However, the low intrinsic electrical conductivity and poor cycling... 
High rate capability | Lithium-ion battery | Cycling performance | Anode
Journal Article
Journal of Physical Chemistry Letters, 04/2015, Volume 6, Issue 8, pp. 1357 - 1362
Journal Article
Chemical Communications: Chem Comm, ISSN 1359-7345, 03/2015, Volume 51, Issue 22, pp. 4693 - 4696
A new O3-Na sub(0.78)Li sub(0.18)Ni sub(0.25)Mn sub(0.583)O sub(w) is prepared as the cathode material for Na-ion batteries, delivering exceptionally high... 
Transition metals | Diffraction | Sodium | Voltage | Electric batteries | Density | Tuning | Rechargeable batteries | Cathodes
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 11/2019
Journal Article
Microscopy and Microanalysis, ISSN 1431-9276, 08/2019, Volume 25, Issue S2, pp. 1856 - 1857
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2018, Volume 394, p. 114
A urea-based hydrothermal approach has been applied to synthesize LiNi.sub.0.5Co.sub.0.2Mn.sub.0.3O.sub.2 (NCM523) cathode materials with focus on... 
Urea | Transition metal compounds | Electrochemistry | Carbonates | Batteries
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 08/2015, Volume 60, pp. 13 - 16
A series of new O3 cathode materials, NaLi x Ni 1/3 - x Mn 1/3 + x Co 1/3 - x O 2 (x = 0.07, 0.13, and 0.2), are explored by substituting Li in the layered... 
Suppressed phase transformation | Na ion batteries | O3 layered cathode | Li substitution | High capacity
Journal Article
Journal of Physical Chemistry C, ISSN 1932-7447, 04/2014, Volume 118, Issue 15, pp. 7856 - 7864
Journal Article
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