Size controlled, nanoparticulate Li2MnSiO4 cathodes were successfully prepared by sol-gel route. Effects of calcination temperature and carbon content (adipic acid) were studied during synthesis process. EPR study was conducted to ensure the formation of phase through oxidation state of manganese. Microscopic pictures indicate spherical shape morphology of the synthesized Li2MnSiO4 nanoparticles. Transmission electron microscopic pictures confirmed the presence of carbon coating on the surface of the particles. Further, the optimization has been performed based on phase purity and its battery performance. From the optimization, 700??C and 0.2mol adipic acid (against total metal ion present in the compound) were found better conditions to ac...
In this paper, we report on the preparation of a Li2MnSiO4@C nanocomposite and its application as a ...
Diversified and extended application of lithium-ion batteries require the development of innovative ...
Lithium-excess and nano-sized Li2+xMn1−x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...
Size controlled, nanoparticulate Li2MnSiO4 cathodes were successfully prepared by sol–gel route. Eff...
Novel hybrid Li2MnSiO4 nanoparticles with carbon have been in-site synthesized by spray pyrolysis of...
Superior lithium storage in Li2MnSiO4 cathodes was observed by altering carbon content during the fo...
Phase-pure carbon-coated Li2MnSiO4 cathode material has been prepared through a PEG-assisted solid s...
High capacity Li2MnSiO4/C nanocomposite with good rate performance was prepared via a facile sol-gel...
Superior performance Li2MnSiO4 cathodes with flower-like morphology are prepared by hydrothermal rou...
Li2MnSiO4 is synthesized by solid state reaction method under the optimized conditions of 900oC in A...
Stability of nine electrolyte solutions, prepared using the most commercially preferred salts and el...
Li2MnSiO4 was synthesized using the solid-state method under an Ar atmosphere at three different cal...
Li2MnSiO4 cathode materials doped with various cationic ions, Ga3+, Al3+, and Mg2+, are synthesized ...
This research concerns synthesis of C/Li2MnSiO4 nanocomposite materials and investigation of their s...
Fast sol-gel synthesis of mesoporous Li2MnSiO4C nanocomposite with improved electrochemical performa...
In this paper, we report on the preparation of a Li2MnSiO4@C nanocomposite and its application as a ...
Diversified and extended application of lithium-ion batteries require the development of innovative ...
Lithium-excess and nano-sized Li2+xMn1−x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...
Size controlled, nanoparticulate Li2MnSiO4 cathodes were successfully prepared by sol–gel route. Eff...
Novel hybrid Li2MnSiO4 nanoparticles with carbon have been in-site synthesized by spray pyrolysis of...
Superior lithium storage in Li2MnSiO4 cathodes was observed by altering carbon content during the fo...
Phase-pure carbon-coated Li2MnSiO4 cathode material has been prepared through a PEG-assisted solid s...
High capacity Li2MnSiO4/C nanocomposite with good rate performance was prepared via a facile sol-gel...
Superior performance Li2MnSiO4 cathodes with flower-like morphology are prepared by hydrothermal rou...
Li2MnSiO4 is synthesized by solid state reaction method under the optimized conditions of 900oC in A...
Stability of nine electrolyte solutions, prepared using the most commercially preferred salts and el...
Li2MnSiO4 was synthesized using the solid-state method under an Ar atmosphere at three different cal...
Li2MnSiO4 cathode materials doped with various cationic ions, Ga3+, Al3+, and Mg2+, are synthesized ...
This research concerns synthesis of C/Li2MnSiO4 nanocomposite materials and investigation of their s...
Fast sol-gel synthesis of mesoporous Li2MnSiO4C nanocomposite with improved electrochemical performa...
In this paper, we report on the preparation of a Li2MnSiO4@C nanocomposite and its application as a ...
Diversified and extended application of lithium-ion batteries require the development of innovative ...
Lithium-excess and nano-sized Li2+xMn1−x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...