Manufacturing of binder free mixed oxide electrodes with an unique 1D tubular morphology, high lithium storage ability and long durability represents a real challenge to assemble efficient lithium ion batteries for safe operation. Herein, the successful fabrication of mixed Ti Fe O nanotubes NTs by a single po tentiostatic anodization step of a TiFe 12 alloy at room temperature is reported. With the help of suitable characterization tools, the mixed oxide tubes in the different preparation stages were investigated for crystallinity and phase formation including an analysis on the structure defects which influence the ma terial s performance. Their morphology and element distribution were evaluated in the bulk and on the surface as well...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
The anode materials of batteries are one area of research that have much room for improvement. The i...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...
Manufacturing of binder free mixed oxide electrodes with an unique 1D tubular morphology, high lithi...
Manufacturing of binder free mixed oxide electrodes with an unique 1D tubular morphology, high lithi...
Vertically aligned Fe, S, and Fe-S doped anatase TiO2 nanotube arrays are prepared by an electrochem...
Vertically aligned Fe, S, and Fe-S doped anatase TiO2 nanotube arrays are prepared by an electrochem...
Developing novel electrode materials is a substantial issue to improve the performance of lithium io...
Developing novel electrode materials is a substantial issue to improve the performance of lithium io...
Nanometric mixed iron-titanium oxides were prepared by mechanical milling with a view to determining...
The aim of this work is to analyze the efficiency of titania nanotubes acting as anode for lithium-i...
Anatase Ti O2 nanotubes and nanorods were prepared by annealing mixed H2 Ti2 O5 H2 O and anatase Ti ...
Morphology and electrochemical performance of mixed crystallographic phase titania nanotubes for pro...
Morphology and electrochemical performance of mixed crystallographic phase titania nanotubes for pro...
New researches suggest that the price of lithium-ion batteries could fall dramatically by 2020, crea...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
The anode materials of batteries are one area of research that have much room for improvement. The i...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...
Manufacturing of binder free mixed oxide electrodes with an unique 1D tubular morphology, high lithi...
Manufacturing of binder free mixed oxide electrodes with an unique 1D tubular morphology, high lithi...
Vertically aligned Fe, S, and Fe-S doped anatase TiO2 nanotube arrays are prepared by an electrochem...
Vertically aligned Fe, S, and Fe-S doped anatase TiO2 nanotube arrays are prepared by an electrochem...
Developing novel electrode materials is a substantial issue to improve the performance of lithium io...
Developing novel electrode materials is a substantial issue to improve the performance of lithium io...
Nanometric mixed iron-titanium oxides were prepared by mechanical milling with a view to determining...
The aim of this work is to analyze the efficiency of titania nanotubes acting as anode for lithium-i...
Anatase Ti O2 nanotubes and nanorods were prepared by annealing mixed H2 Ti2 O5 H2 O and anatase Ti ...
Morphology and electrochemical performance of mixed crystallographic phase titania nanotubes for pro...
Morphology and electrochemical performance of mixed crystallographic phase titania nanotubes for pro...
New researches suggest that the price of lithium-ion batteries could fall dramatically by 2020, crea...
Anatase TiO2 nanotube arrays of different morphology were prepared by a two-step process: anodic oxi...
The anode materials of batteries are one area of research that have much room for improvement. The i...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...