Multi layered titanate nanotubes (TNTs) has been considered as a candidate for lithium ion battery anode material. However, it has a problem of high irreversible capacity due to trapped lithium ions in the interlayer space. To solve this problem, an attempt to enlarge the interlayer spacing has been made in this work to improve intercalation characteristics of TNTs. Monoatomic ions in hydrothermally heat-treated TNTs were substituted to one of Li, Na and K alkali ions via ion-exchange process. The TNTs (200) interlayer spacing peak in XRD patterns showed a shift to a lower angle, indicating an enlarged interlayer spacing of TNTs. The Li-, Na- and K-ion exchanged TNTs exhibited an initial capacity of 214, 230 and 248 mA h/g at 0.1 C, respect...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
Titanate nanotubes are promising materials for Li-ion battery anodes because of their special morpho...
The relatively large ionic radius of the Na ion is one of the primary reasons for the slow diffusion...
The tubular and layered structure of titanate nanotubes facilitate ion movement and provide a high r...
Titanate nanotubes were prepared by hydrothermal process of powder for the application to the anode ...
The electrochemical characteristics of lepidocrocite-type titanates derived from K<sub>0.8</sub>Ti<s...
The chemical environments of the interlayer Na sites of layered titanate are finely controlled by th...
Titanate nanotubes and Ni doped titanate nanotubes were synthesized by hydrothermal method using rut...
Titanate nanotubes and Ni doped titanate nanotubes were synthesized by hydrothermal method using rut...
Titanate nanotubes and Ni doped titanate nanotubes were synthesized by hydrothermal method using rut...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
Trigonal Na4Ti5O12 with a tunnel-structured three-dimensional framework was first examined as an ano...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
Titanate nanotubes are promising materials for Li-ion battery anodes because of their special morpho...
The relatively large ionic radius of the Na ion is one of the primary reasons for the slow diffusion...
The tubular and layered structure of titanate nanotubes facilitate ion movement and provide a high r...
Titanate nanotubes were prepared by hydrothermal process of powder for the application to the anode ...
The electrochemical characteristics of lepidocrocite-type titanates derived from K<sub>0.8</sub>Ti<s...
The chemical environments of the interlayer Na sites of layered titanate are finely controlled by th...
Titanate nanotubes and Ni doped titanate nanotubes were synthesized by hydrothermal method using rut...
Titanate nanotubes and Ni doped titanate nanotubes were synthesized by hydrothermal method using rut...
Titanate nanotubes and Ni doped titanate nanotubes were synthesized by hydrothermal method using rut...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
Trigonal Na4Ti5O12 with a tunnel-structured three-dimensional framework was first examined as an ano...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...
International audienceA lamellar lepidocrocite-type titanate structure with ∼25% Ti4+ vacancies was ...