International audienceWe herein report the synthesis, crystal structure, and electrochemical performances of a new Li-based vanadium oxysulfate phase, Li2VO(SO4)2, whose structure is built on vanadyl-containing VO5 square-based pyramids and SO4 groups linked by vertices to form layers. Li2VO(SO4)2 presents a redox activity at 4.7 V vs Li+/Li0 with a reversible capacity of 50 mA·h/g, while the chemically similar but structurally different Na2VO(SO4)2 delivers a capacity of 60 mA h/g at 4.5 V vs Na+/Na0. Density functional theory calculations are also performed to rationalize our findings in terms of redox activity and phase stability
International audienceThe Na4VO(PO4)2 phase has been synthesized using a solid state route in sealed...
Vanadium phosphate positive electrode materials attract great interest in the field of Alkali-ion (L...
International audienceThe Na4VO(PO4)2 phase has been synthesized using a solid state route in sealed...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
We herein report the synthesis, crystal structure, and electrochemical performances of a new Li-base...
Since 1990s, rechargeable Li-ion batteries have been widely used in consumer electronics such as cel...
Heterogeneous vanadium-oxide compounds (bronzes, vanadates) attract the attention of developers of l...
The used of rechargeable lithium ion batteries are so widely nowadays on consumer electronics especi...
The electrochemical intercalation of lithium into vanadium pentoxide was first reported in the 1970\...
A Li-rich polyanionic compound based on V3+ with a previously unknown structure, Li5VF4(SO4)2, has b...
Tremendous attention has been made to the development of high energy and power lithium-ion batteries...
International audienceThe Na4VO(PO4)2 phase has been synthesized using a solid state route in sealed...
Vanadium phosphate positive electrode materials attract great interest in the field of Alkali-ion (L...
International audienceThe Na4VO(PO4)2 phase has been synthesized using a solid state route in sealed...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
International audienceWe herein report the synthesis, crystal structure, and electrochemical perform...
We herein report the synthesis, crystal structure, and electrochemical performances of a new Li-base...
Since 1990s, rechargeable Li-ion batteries have been widely used in consumer electronics such as cel...
Heterogeneous vanadium-oxide compounds (bronzes, vanadates) attract the attention of developers of l...
The used of rechargeable lithium ion batteries are so widely nowadays on consumer electronics especi...
The electrochemical intercalation of lithium into vanadium pentoxide was first reported in the 1970\...
A Li-rich polyanionic compound based on V3+ with a previously unknown structure, Li5VF4(SO4)2, has b...
Tremendous attention has been made to the development of high energy and power lithium-ion batteries...
International audienceThe Na4VO(PO4)2 phase has been synthesized using a solid state route in sealed...
Vanadium phosphate positive electrode materials attract great interest in the field of Alkali-ion (L...
International audienceThe Na4VO(PO4)2 phase has been synthesized using a solid state route in sealed...