The electrochemical reactivity of ball-milled MoO3 powders was investigated in Li rechargeable cells. High-energy ball-milling converts highly-crystalline MoO3 bulk powders into partially reduced low-crystalline MoO3-y materials with a reduced particle size. Both bulk and ball-milled MoO3 exhibit a first discharge capacity beyond 1100 mAh g-1 when tested in the 0-3 V (vs. Li/Li+) range, which is indicative of a complete conversion reaction. It is found that partial reduction caused by ball-milling results in a reduction in the conversion reaction. Additionally, incomplete re-oxidation during subsequent charge results in the formation of MoO2 instead of MoO3, which in turn affects the reactivity in subsequent cycles. As compared to bulk MoO3...
Developing electrode materials with high-energy densities is important for the development of lithiu...
We demonstrate a facile and effective way for the fabrication of a flexible, homogeneous and neat a-...
Li<sub>2</sub>MoO<sub>3</sub>, with a Mo(IV)/Mo(VI) redox couple, has been tested as a cathode add...
International audienceThis work aimed at synthesizing MoO3 and MoO2 by a facile and cost-effective m...
AbstractThe need of high energy density battery leads to explore new materials for lithium ion batte...
The high temperature lithiation behavior of the MoO2 electrode is examined, which is lithiated by on...
A MoO3-carbon nanocomposite was synthesized from a mixture of MoO3 and graphite by a controlled ball...
MoO3 is a potential anode material for Li-ion batteries (LIBs) because of its high theoretical capac...
Owing to their high reactivity toward lithium, molybdenum oxides have been widely studied as anode m...
MoO2 has gained renewed attention as a safe oxide anode host material for lithium ion insertion beca...
To reduce surface contamination and increase battery life, MoO3 nanoparticles were coated with a hig...
International audienceWe report the structural and electrochemical properties of MoO3 nanofibers syn...
WOS: 000448031900047PubMed ID: 30360177Scientists have been working to replace graphite, the state-o...
International audienceMolybdenum oxides (MoOy) exhibit quite interesting structural, chemical, elect...
This paper introduces a large-scale and facile method for synthesizing low crystalline MoO3/carbon c...
Developing electrode materials with high-energy densities is important for the development of lithiu...
We demonstrate a facile and effective way for the fabrication of a flexible, homogeneous and neat a-...
Li<sub>2</sub>MoO<sub>3</sub>, with a Mo(IV)/Mo(VI) redox couple, has been tested as a cathode add...
International audienceThis work aimed at synthesizing MoO3 and MoO2 by a facile and cost-effective m...
AbstractThe need of high energy density battery leads to explore new materials for lithium ion batte...
The high temperature lithiation behavior of the MoO2 electrode is examined, which is lithiated by on...
A MoO3-carbon nanocomposite was synthesized from a mixture of MoO3 and graphite by a controlled ball...
MoO3 is a potential anode material for Li-ion batteries (LIBs) because of its high theoretical capac...
Owing to their high reactivity toward lithium, molybdenum oxides have been widely studied as anode m...
MoO2 has gained renewed attention as a safe oxide anode host material for lithium ion insertion beca...
To reduce surface contamination and increase battery life, MoO3 nanoparticles were coated with a hig...
International audienceWe report the structural and electrochemical properties of MoO3 nanofibers syn...
WOS: 000448031900047PubMed ID: 30360177Scientists have been working to replace graphite, the state-o...
International audienceMolybdenum oxides (MoOy) exhibit quite interesting structural, chemical, elect...
This paper introduces a large-scale and facile method for synthesizing low crystalline MoO3/carbon c...
Developing electrode materials with high-energy densities is important for the development of lithiu...
We demonstrate a facile and effective way for the fabrication of a flexible, homogeneous and neat a-...
Li<sub>2</sub>MoO<sub>3</sub>, with a Mo(IV)/Mo(VI) redox couple, has been tested as a cathode add...