New iron-oxide-based anodes are prepared by an environmentally-friendly and low-cost route. The analysis of the composition, structure, and microstructure of the samples reveals the presence of a major hematite phase, which is accompanied by a certain concentration of an oxyhydroxide phase, which can act as a “lithium-reservoir”. By using sodium alginate as a binder, the synthesized anodes display superior electrochemical response, i.e., high specific capacity values and high stability, not only versus Li but also versus a high voltage cathode in a full cell. From these bare materials, clay-supported anodes are further obtained using sepiolite and bentonite natural silicates. The electrochemical performance of such composites is...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Due to the severe volume expansion and poor cycle stability, transition metal oxide anode is still n...
New iron-oxide-based anodes are prepared by an environmentally-friendly and low-cost route. The anal...
New iron-oxide-based anodes are prepared by an environmentally-friendly and low-cost route. The anal...
Hydrothermally synthesized single-crystalline hematite (α<i>-</i>Fe<sub>2</sub>O<sub>3</sub>) nanoro...
Successful fabrication of nanoporous metal oxides with carbonaceous nanomaterials can enhance the co...
Iron oxide (Fe2O3) is an abundant and potentially low-cost material for fabricating lithium-ion batt...
Iron oxide is an abundant and potentially low-cost material for fabricating lithium-ion battery anod...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
Abstract The application of hematite in lithium-ion batteries (LIBs) has been severel...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
Robust composite particles containing Fe3O4 cores and porous conductive carbon?silicate layers were ...
In this study, within the defined orthogonal array of Taguchi design, the hydrothermal process param...
We report a simple molten salt method to prepare nanosize α-Fe2O3, as well as its electrochemical pe...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Due to the severe volume expansion and poor cycle stability, transition metal oxide anode is still n...
New iron-oxide-based anodes are prepared by an environmentally-friendly and low-cost route. The anal...
New iron-oxide-based anodes are prepared by an environmentally-friendly and low-cost route. The anal...
Hydrothermally synthesized single-crystalline hematite (α<i>-</i>Fe<sub>2</sub>O<sub>3</sub>) nanoro...
Successful fabrication of nanoporous metal oxides with carbonaceous nanomaterials can enhance the co...
Iron oxide (Fe2O3) is an abundant and potentially low-cost material for fabricating lithium-ion batt...
Iron oxide is an abundant and potentially low-cost material for fabricating lithium-ion battery anod...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
Abstract The application of hematite in lithium-ion batteries (LIBs) has been severel...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
Robust composite particles containing Fe3O4 cores and porous conductive carbon?silicate layers were ...
In this study, within the defined orthogonal array of Taguchi design, the hydrothermal process param...
We report a simple molten salt method to prepare nanosize α-Fe2O3, as well as its electrochemical pe...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Due to the severe volume expansion and poor cycle stability, transition metal oxide anode is still n...