After momentary attention as potential battery materials during the 1980s, sodium titanium disulphides, like the whole Na–Ti–S system, have only been investigated in a slapdash fashion. While they pop up in current reviews on the very subject time and again, little is known about their actual crystal-structural features and sodium-ion diffusion within them. Herein, we present a short summary of literature on the Na–Ti–S system, a new synthesis route to Na0.5TiS2-3R1, and results of high-temperature X-ray and neutron diffractometry on this polytype, which is stable for medium sodium content. Based thereon, we propose a revision of the crystal structure reported in earlier literature (missed inversion symmetry). Analyses of framework topology...
The performance of Na-ion batteries is sensitive to the nature of cation ordering and phase transfor...
The Na superionic conductor (aka Nasicon, Na1+xZr2SixP3-xO12, where 0 <= x <= 3) is one of the promi...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...
Sodium-ion batteries have attracted considerable interest as an alternative to lithium-ion batteries...
The monoclinic phase of Na4Ti5O12 (M-Na4Ti5O12) has been investigated as a potential sodium-ion batt...
© 2022 American Chemical Society.Titanium disulfide (TiS2), a first-generation cathode in lithium ba...
Na-rich antiperovskites are recently developed solid electrolytes with enhanced sodium ionic conduct...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
The limit of the energy density and increasing security issues on sodium-ion batteries (SIBs) impede...
© 2019 American Chemical Society.Sodium superionic conductors are key components of solid-state sodi...
Ion migration in solids provides basis for a wide range of technique applications including alkali-m...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
Based on density functional theory, we have systematically studied the crystal and electronic struct...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
To evaluate the potential of Na-ion batteries, we contrast in this work the difference between Na-io...
The performance of Na-ion batteries is sensitive to the nature of cation ordering and phase transfor...
The Na superionic conductor (aka Nasicon, Na1+xZr2SixP3-xO12, where 0 <= x <= 3) is one of the promi...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...
Sodium-ion batteries have attracted considerable interest as an alternative to lithium-ion batteries...
The monoclinic phase of Na4Ti5O12 (M-Na4Ti5O12) has been investigated as a potential sodium-ion batt...
© 2022 American Chemical Society.Titanium disulfide (TiS2), a first-generation cathode in lithium ba...
Na-rich antiperovskites are recently developed solid electrolytes with enhanced sodium ionic conduct...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
The limit of the energy density and increasing security issues on sodium-ion batteries (SIBs) impede...
© 2019 American Chemical Society.Sodium superionic conductors are key components of solid-state sodi...
Ion migration in solids provides basis for a wide range of technique applications including alkali-m...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
Based on density functional theory, we have systematically studied the crystal and electronic struct...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
To evaluate the potential of Na-ion batteries, we contrast in this work the difference between Na-io...
The performance of Na-ion batteries is sensitive to the nature of cation ordering and phase transfor...
The Na superionic conductor (aka Nasicon, Na1+xZr2SixP3-xO12, where 0 <= x <= 3) is one of the promi...
Abstract High performance batteries based on the movement of Li ions in Li x CoO2 have made possible...