The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then heat-treated in air at several temperatures within the range 200-400 degrees C. The heat-treatment changed its morphological, structural and charging/discharging performance. The product obtained upon the treatment at 300 degrees C. consisting of uniform, rod-shaped particles, 100-150 nm in diameter and 300-800 nm in length, displayed the best electrochemical performance in aqueous LiNO3 solution. Its initial discharge capacity amounted to 136.8 mAh g(-1) at a rate of C/5, which upon 50 charging/discharging cycles decreased for only 12%. (C) 2011 Elsevier Ltd. All rights reserved
A challenge in developing high-performance lithium batteries requires a safe technology without flam...
Nanosized lithium vanadate materials were synthesized by controlling the pH of the lithium hydroxide...
The LiLaxCo0.20-xNi0.80O2, where x = 0.00, 0.01, 0.03, 0.05 and 0.10 cathode materials for rechargea...
The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then hea...
We report facile solvothermal synthesis of submicron (sub-micrometer)-sized rod-like Li1.5V3O8 cryst...
A new synthesis route has been applied to obtain Li1+xV3O8. Instead of the conventional high-tempera...
In this work, nano LiV3O8(LVO) was synthesized using the rheological phase reaction method. Subseque...
LiV3O8 powders were prepared via a facile wet chemical synthesis method starting from the stoichiome...
Li1+xV3O8 is an attractive cathode material for lithium secondary batteries because of its high spec...
Structural and kinetic behavior of lithium-vanadium-oxide (LixV3O8) cathode is studied as lithium-io...
Single phase nanobelt-like Na1.2V3O8 was synthesized by precipitation from aqueous solution of V2O5,...
Single phase nanobelt-like Na1.2V3O8 was synthesized by precipitation from aqueous solution of V2O5,...
LiNi1/3Co1/3Mn1/3O2 cathode materials have been coated with Al2O3 nano-particles using sol-gel proce...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
International audienceA versatile route has been developed to synthesize the Li1+alpha V3O8 gel prec...
A challenge in developing high-performance lithium batteries requires a safe technology without flam...
Nanosized lithium vanadate materials were synthesized by controlling the pH of the lithium hydroxide...
The LiLaxCo0.20-xNi0.80O2, where x = 0.00, 0.01, 0.03, 0.05 and 0.10 cathode materials for rechargea...
The amorphous hydrated precursor of Li1.2V3O8 was synthesized by soft chemistry method, and then hea...
We report facile solvothermal synthesis of submicron (sub-micrometer)-sized rod-like Li1.5V3O8 cryst...
A new synthesis route has been applied to obtain Li1+xV3O8. Instead of the conventional high-tempera...
In this work, nano LiV3O8(LVO) was synthesized using the rheological phase reaction method. Subseque...
LiV3O8 powders were prepared via a facile wet chemical synthesis method starting from the stoichiome...
Li1+xV3O8 is an attractive cathode material for lithium secondary batteries because of its high spec...
Structural and kinetic behavior of lithium-vanadium-oxide (LixV3O8) cathode is studied as lithium-io...
Single phase nanobelt-like Na1.2V3O8 was synthesized by precipitation from aqueous solution of V2O5,...
Single phase nanobelt-like Na1.2V3O8 was synthesized by precipitation from aqueous solution of V2O5,...
LiNi1/3Co1/3Mn1/3O2 cathode materials have been coated with Al2O3 nano-particles using sol-gel proce...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
International audienceA versatile route has been developed to synthesize the Li1+alpha V3O8 gel prec...
A challenge in developing high-performance lithium batteries requires a safe technology without flam...
Nanosized lithium vanadate materials were synthesized by controlling the pH of the lithium hydroxide...
The LiLaxCo0.20-xNi0.80O2, where x = 0.00, 0.01, 0.03, 0.05 and 0.10 cathode materials for rechargea...