Due to its quite high theoretical specific-energy density, FeF2 nanomaterial is a good candidate for the cathode material of high-energy lithium-ion batteries. The preparation of FeF2 nanomaterial is very important for its application. At present, the preparation process mostly involves high temperature and an inert atmosphere, which need special or expensive devices. It is very important to seek a low-temperature and mild method, without the need for high temperature and inert atmosphere, for the preparation and following application of FeF2 nanomaterial. This article reports a novel sugar-assisted solvothermal method in which the FeF3∙3H2O precursor is reduced into FeF2 nanomaterial by carbon derived from the dehydration and condensation ...
Na-ion batteries (NIBs) are considered one of the most attractive alternatives for Li-ion batteries ...
AgFeO2 nanoparticles synthesized via precipitation at room temperature are investigated in Li- and N...
Iron trifluoride (FeF3) might be a suitable high-voltage cathode material for high-power thermal bat...
Due to its quite high theoretical specific-energy density, FeF2 nanomaterial is a good candidate for...
The application of conversion materials in electrochemical storage devices is one of the few options...
In this communication, for the first time, we demonstrate the fast and facile preparation of porous ...
FeF2/carbon composite nanoparticle was prepared by a one-pot thermal reaction using a mixture of fer...
Iron fluoride is a kind of high-capacity conversion-type cathode material for lithium-ion batteries ...
The application of metal fluorides as cathodes for lithium ion batteries has been hindered by inadeq...
Metal fluorides with high redox potential and capacity from strong metal–fluoride bond and conversio...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Iron fluoride (FeF2) is an attractive material for use as nanocomposite conversion reaction based ca...
The discovery of high-performance cathode materials is imperative for advances in current lithium-io...
Iron fluoride (FeF2) is an attractive material for use as nanocomposite conversion reaction based ca...
Owing to their high theoretical capacity, metal fluorides have attracted significant interest as mat...
Na-ion batteries (NIBs) are considered one of the most attractive alternatives for Li-ion batteries ...
AgFeO2 nanoparticles synthesized via precipitation at room temperature are investigated in Li- and N...
Iron trifluoride (FeF3) might be a suitable high-voltage cathode material for high-power thermal bat...
Due to its quite high theoretical specific-energy density, FeF2 nanomaterial is a good candidate for...
The application of conversion materials in electrochemical storage devices is one of the few options...
In this communication, for the first time, we demonstrate the fast and facile preparation of porous ...
FeF2/carbon composite nanoparticle was prepared by a one-pot thermal reaction using a mixture of fer...
Iron fluoride is a kind of high-capacity conversion-type cathode material for lithium-ion batteries ...
The application of metal fluorides as cathodes for lithium ion batteries has been hindered by inadeq...
Metal fluorides with high redox potential and capacity from strong metal–fluoride bond and conversio...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Iron fluoride (FeF2) is an attractive material for use as nanocomposite conversion reaction based ca...
The discovery of high-performance cathode materials is imperative for advances in current lithium-io...
Iron fluoride (FeF2) is an attractive material for use as nanocomposite conversion reaction based ca...
Owing to their high theoretical capacity, metal fluorides have attracted significant interest as mat...
Na-ion batteries (NIBs) are considered one of the most attractive alternatives for Li-ion batteries ...
AgFeO2 nanoparticles synthesized via precipitation at room temperature are investigated in Li- and N...
Iron trifluoride (FeF3) might be a suitable high-voltage cathode material for high-power thermal bat...