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 improved, e...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
We have designed a novel hybrid nanostructure by coating Fe2O3 nanoparticles with multi-walled carbo...
We have designed a novel hybrid nanostructure by coating Fe2O3 nanoparticles with multi-walled carbo...
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...
Porous flower-like α-Fe2O3 nanostructures have been synthesized by ethylene glycol mediated iron alk...
Successful fabrication of nanoporous metal oxides with carbonaceous nanomaterials can enhance the co...
Hydrothermally synthesized single-crystalline hematite (α<i>-</i>Fe<sub>2</sub>O<sub>3</sub>) nanoro...
Due to the severe volume expansion and poor cycle stability, transition metal oxide anode is still n...
Iron oxide is an abundant and potentially low-cost material for fabricating lithium-ion battery anod...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Abstract The application of hematite in lithium-ion batteries (LIBs) has been severel...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
In this study, within the defined orthogonal array of Taguchi design, the hydrothermal process param...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and en...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
We have designed a novel hybrid nanostructure by coating Fe2O3 nanoparticles with multi-walled carbo...
We have designed a novel hybrid nanostructure by coating Fe2O3 nanoparticles with multi-walled carbo...
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...
Porous flower-like α-Fe2O3 nanostructures have been synthesized by ethylene glycol mediated iron alk...
Successful fabrication of nanoporous metal oxides with carbonaceous nanomaterials can enhance the co...
Hydrothermally synthesized single-crystalline hematite (α<i>-</i>Fe<sub>2</sub>O<sub>3</sub>) nanoro...
Due to the severe volume expansion and poor cycle stability, transition metal oxide anode is still n...
Iron oxide is an abundant and potentially low-cost material for fabricating lithium-ion battery anod...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
Abstract The application of hematite in lithium-ion batteries (LIBs) has been severel...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and env...
In this study, within the defined orthogonal array of Taguchi design, the hydrothermal process param...
Carbon encapsulated Fe2O3 nanoparticles (C@Fe2O3) were successfully synthesized via a facile and en...
Iron oxide is ntensively studied as a potential anode material of lithium ion battery. Although it h...
We have designed a novel hybrid nanostructure by coating Fe2O3 nanoparticles with multi-walled carbo...
We have designed a novel hybrid nanostructure by coating Fe2O3 nanoparticles with multi-walled carbo...