The aim of this work is to analyze the efficiency of titania nanotubes acting as anode for lithium-ion batteries. The titania nanotubes has been obtained using an anodization process in a ethylene glycol solution, containing ammonium fluoride and a small quantity of water. After a heat treatment, needed to crystallize the material in the anatase form, the nanotubes has been analyzed in their performance as anode in a Li-ion battery. Structural and morphologic characterization of the titania nanotubes have been studied using XRD and SEM analysis, while the galvanostatic cycles has been collected in order to examine the electrochemical performance as electrodic material. Finally, a comparison of the electrochemical performance between our sam...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
AbstractA new type TiO2 electrode was fabricated by forming nanotube-like TiO2 film on a Ti sheet in...
In the challenging scenario of anode materials for sodium-ion batteries, TiO2 nanotubes could repres...
The aim of this work is to analyze the efficiency of titania nanotubes acting as anode for lithium-i...
In this contribution we report on electrochemical approaches in TiO2 based electrodes synthesis. TiO...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
New researches suggest that the price of lithium-ion batteries could fall dramatically by 2020, crea...
Lithium-ion batteries have since their introduction on the commercial market in the early 1990s play...
Lithium-ion batteries have since their introduction on the commercial market in the early 1990s play...
Titania nanotubes were prepared by a simple hydrothermal route. Their electrochemical performance ha...
Due to their high specific surface area and advanced properties, TiO2 nanotubes (TiO2 NTs) have a gr...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
AbstractA new type TiO2 electrode was fabricated by forming nanotube-like TiO2 film on a Ti sheet in...
In the challenging scenario of anode materials for sodium-ion batteries, TiO2 nanotubes could repres...
The aim of this work is to analyze the efficiency of titania nanotubes acting as anode for lithium-i...
In this contribution we report on electrochemical approaches in TiO2 based electrodes synthesis. TiO...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
New researches suggest that the price of lithium-ion batteries could fall dramatically by 2020, crea...
Lithium-ion batteries have since their introduction on the commercial market in the early 1990s play...
Lithium-ion batteries have since their introduction on the commercial market in the early 1990s play...
Titania nanotubes were prepared by a simple hydrothermal route. Their electrochemical performance ha...
Due to their high specific surface area and advanced properties, TiO2 nanotubes (TiO2 NTs) have a gr...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
AbstractA new type TiO2 electrode was fabricated by forming nanotube-like TiO2 film on a Ti sheet in...
In the challenging scenario of anode materials for sodium-ion batteries, TiO2 nanotubes could repres...