Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a suitable choice as anode materials in sodium-ion batteries. In the recent years, various hypotheses have been proposed regarding the actual mechanism of the reversible insertion of sodium ions in the TiO2 structure, and previous reports are often controversial in this respect. Interestingly, when tested as binder- and conducting additive-free electrodes in laboratory-scale sodium cells, amorphous and crystalline (anatase) TiO2 nanotubular arrays obtained by simple anodic oxidation exhibit peculiar and intrinsically different electrochemical responses. In particular, after the initial electrochemical activation, anatase TiO2 shows excellent rate...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a su...
Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a su...
Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a su...
Among a wide range of applications (e.g., dye-sensitized solar cells, lithium-ion batteries, superca...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Among a wide range of applications (e.g., dye-sensitized solar cells, lithium-ion batteries, superca...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
TiO2 has drawn increasing research attention as negative electrode material in sodium ion battery be...
Sodium ion batteries are an attractive alternative to lithium ion batteries that alleviate problems ...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a su...
Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a su...
Due to their inherent safety, low cost, and structural stability, TiO2 nanostructures represent a su...
Among a wide range of applications (e.g., dye-sensitized solar cells, lithium-ion batteries, superca...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Among a wide range of applications (e.g., dye-sensitized solar cells, lithium-ion batteries, superca...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
Titanium dioxide (TiO2), in its amorphous as well as most common polyphases including anatase, rutil...
TiO2 has drawn increasing research attention as negative electrode material in sodium ion battery be...
Sodium ion batteries are an attractive alternative to lithium ion batteries that alleviate problems ...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...
International audienceAnatase TiO2 is a potential negative electrode for sodium-ion batteries. The s...