High surface area, nanostructured, and phase-pure TiO2(B) noodles-like secondary particles were successfully synthesized by a facile one-pot synthesis, based on the hydrolysis of TiCl3 using a mixture of ethylene glycol and water at moderate temperature. The primary nanoparticles have a uniform size and are about 15 nm in diameter as determined by TEM analysis and exhibit an increased exposure of the (010) facet as indicated by XRD analysis. Unlike the electrochemical reaction with lithium, the application as sodiumion electrode material reveals substantial differences, including the initial amorphization of the TiO2(B) particles, accompanied by a partial irreversibility of the sodium storage, presumably related to sodium trapping inside th...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Porous nanocrystalline anatase TiO2 was prepared by a modified hydrolytic route coupled with an inte...
In this study, we synthesize a carbon-free anatase/bronze TiO2 microsphere (TiO2(A/B)-MS) via the so...
Anatase TiO2 nanocrystals were successfully employed as anodes for rechargeable Na-ion batteries for...
Oral presentation given at the 3rd International Forum on Progress and Trends in Battery and Capacit...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
Here we summarize some results on the use of TiO nanostructures as anode materials for more efficien...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Porous nanocrystalline anatase TiO2 was prepared by a modified hydrolytic route coupled with an inte...
In this study, we synthesize a carbon-free anatase/bronze TiO2 microsphere (TiO2(A/B)-MS) via the so...
Anatase TiO2 nanocrystals were successfully employed as anodes for rechargeable Na-ion batteries for...
Oral presentation given at the 3rd International Forum on Progress and Trends in Battery and Capacit...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
International audienceMesoporous anatase titanium dioxide (TiO2) is prepared by an easily up-scalabl...
Here we summarize some results on the use of TiO nanostructures as anode materials for more efficien...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Rechargeable sodium-ion batteries are becoming a viable alternative to lithium-based technology in e...
Porous nanocrystalline anatase TiO2 was prepared by a modified hydrolytic route coupled with an inte...
In this study, we synthesize a carbon-free anatase/bronze TiO2 microsphere (TiO2(A/B)-MS) via the so...