The development of novel scalable nanoscale materials and fabrication techniques for high performance TiO₂ Li-ion electrodes is investigated in this thesis. The development and study of the novel fabrication methods is approached from the stand point of a binder-free electrode, and its comparison to standard binder-basedelectrodes, making use of commercial P25 TiO₂ product as active material. The characterization of novel titania synthesized by manipulating the parameters of anaqueous process, is performed for two phases of TiO₂, namely anatase and brookite, based on comprehensive nanocrystal morphological and electrochemical property assessment. Finally all is brought together by investigating the application of the novel fabrication proto...
In this research, lithium-ion batteries based on titanium dioxide (TiO2) and lithium titanate (LTO) ...
A nanocomposite of ultrafine anatase nanoparticles ( < 5 nm) embedded N-doped carbon (TiO 2 -NPs/NC)...
Les matériaux à base de dioxyde de titane (TiO2) sont des candidats prometteurs pour remplacer le gr...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
The combined benefits of mesoporosity and in situ grown conductive amorphous carbon on lithium stora...
A green facile scalable method inspired by polymeric dental restorative composite is developed to sy...
Three-dimensional (3-D) monolithic electrodes are an excellent platform for enhancing the electroche...
Nanocomposites of crystalline-controlled TiO2carbon are prepared by a novel one-step approach and ap...
Rechargeable lithium batteries have already revolutionized the market of portable electronic devices...
The present poster contribution aims at optimization of electrochemical properties of titania (N dop...
The Li-ion battery has for several years been at the forefront of powering an ever-increasing number...
A new and effective method to prepare TiO2/C core-shell nanocomposites as active anode materials for...
International audienceThe electrochemical performance of self-organized TiO2 nanotubes (TiO(2)nts) c...
A nanocomposite of ultrafine anatase nanoparticles (<5 nm) embedded N-doped carbon (TiO<sub>2</sub>-...
In this research, lithium-ion batteries based on titanium dioxide (TiO2) and lithium titanate (LTO) ...
A nanocomposite of ultrafine anatase nanoparticles ( < 5 nm) embedded N-doped carbon (TiO 2 -NPs/NC)...
Les matériaux à base de dioxyde de titane (TiO2) sont des candidats prometteurs pour remplacer le gr...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
The combined benefits of mesoporosity and in situ grown conductive amorphous carbon on lithium stora...
A green facile scalable method inspired by polymeric dental restorative composite is developed to sy...
Three-dimensional (3-D) monolithic electrodes are an excellent platform for enhancing the electroche...
Nanocomposites of crystalline-controlled TiO2carbon are prepared by a novel one-step approach and ap...
Rechargeable lithium batteries have already revolutionized the market of portable electronic devices...
The present poster contribution aims at optimization of electrochemical properties of titania (N dop...
The Li-ion battery has for several years been at the forefront of powering an ever-increasing number...
A new and effective method to prepare TiO2/C core-shell nanocomposites as active anode materials for...
International audienceThe electrochemical performance of self-organized TiO2 nanotubes (TiO(2)nts) c...
A nanocomposite of ultrafine anatase nanoparticles (<5 nm) embedded N-doped carbon (TiO<sub>2</sub>-...
In this research, lithium-ion batteries based on titanium dioxide (TiO2) and lithium titanate (LTO) ...
A nanocomposite of ultrafine anatase nanoparticles ( < 5 nm) embedded N-doped carbon (TiO 2 -NPs/NC)...
Les matériaux à base de dioxyde de titane (TiO2) sont des candidats prometteurs pour remplacer le gr...