A new synthesis route has been applied to obtain Li1+xV3O8. Instead of the conventional high-temperature technique leading to the crystalline form, a solution technique producing the amorphous form has been used. This material, after dehydration, shows an electrochemical performance exceeding that of the crystalline one. The rationale for this behavior mainly lies in microscopic factors, i.e., in the possibility for the unit cell of amorphous Li1+xV3O8 to insert up to 9 Li +, instead of six for crystalline Li1+xV3O8. Furthermore, the absence of a long-range crystallographic order reduces the length of the pathways through which Li + ions diffuse. This and the favorable morphology endow amorphous Li1+xV3O8 with a high rate capability. ...
In this paper, the amorphous Bi4V2O11 is synthesized by a simple precipitation method at room temper...
In this paper, the amorphous Bi4V2O11 is synthesized by a simple precipitation method at room temper...
International audienceA versatile route has been developed to synthesize the Li1+alpha V3O8 gel prec...
Following a preliminary investigation, Li/Li1+xV3O8 cells have been examined. Using samples of low x...
A method for the improvement of the electrochemical properties of Li1+xV3O8 is presented based on th...
The reduction mechanism of the bronze Li1.2V3O8 in nonaqueous Li cells has been elucidated. Upon Li+...
A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode mate...
A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode mate...
The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then hea...
The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then hea...
Li1+xV3O8 is an attractive cathode material for lithium secondary batteries because of its high spec...
Development of oxide solid electrolytes for all-solid-state batteries is attracting increasing atten...
A new cathode material for Li cells has been prepared by using the Mo-rich limit of a range of solid...
AbstractAmorphous and crystalline VPO4/C were synthesized by a facile solution reaction method follo...
Li/Li1+xV3O8 cells have been compared with analogous cells based on TiS2, V6O13 and β-Na0.17V2O5 cat...
In this paper, the amorphous Bi4V2O11 is synthesized by a simple precipitation method at room temper...
In this paper, the amorphous Bi4V2O11 is synthesized by a simple precipitation method at room temper...
International audienceA versatile route has been developed to synthesize the Li1+alpha V3O8 gel prec...
Following a preliminary investigation, Li/Li1+xV3O8 cells have been examined. Using samples of low x...
A method for the improvement of the electrochemical properties of Li1+xV3O8 is presented based on th...
The reduction mechanism of the bronze Li1.2V3O8 in nonaqueous Li cells has been elucidated. Upon Li+...
A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode mate...
A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode mate...
The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then hea...
The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then hea...
Li1+xV3O8 is an attractive cathode material for lithium secondary batteries because of its high spec...
Development of oxide solid electrolytes for all-solid-state batteries is attracting increasing atten...
A new cathode material for Li cells has been prepared by using the Mo-rich limit of a range of solid...
AbstractAmorphous and crystalline VPO4/C were synthesized by a facile solution reaction method follo...
Li/Li1+xV3O8 cells have been compared with analogous cells based on TiS2, V6O13 and β-Na0.17V2O5 cat...
In this paper, the amorphous Bi4V2O11 is synthesized by a simple precipitation method at room temper...
In this paper, the amorphous Bi4V2O11 is synthesized by a simple precipitation method at room temper...
International audienceA versatile route has been developed to synthesize the Li1+alpha V3O8 gel prec...