Li2MnSiO4 cathode materials doped with various cationic ions, Ga3+, Al3+, and Mg2+, are synthesized and their microstructure and electrochemical properties are investigated. The samples doped with trivalent ions, especially Ga3+, lead to a higher charge/discharge capacity and initial efficiency with well-dispersed nanoparticle formation. We can realize that the enhanced electrochemical performance of the specific ion doped Li2MnSiO4 cathodes originated from the uniformly distributed nanoparticles rather than the additional lithium insertion/extraction of the given cathode materials induced by the charge compensation. (C) 2013 Elsevier B.V. All rights reserved.1114sciescopu
Lithium transition-metal silicate materials are promising candidates for next generation Li-ion batt...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
Lithium transition-metal silicate materials are promising candidates for next generation Li-ion batt...
Size controlled, nanoparticulate Li2MnSiO4 cathodes were successfully prepared by sol–gel route. Eff...
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...
High capacity Li2MnSiO4/C nanocomposite with good rate performance was prepared via a facile sol-gel...
The electrochemical performance of Li(Mn, M)PO4 (M = Co2+/3+, Ni2+/3+) was investigated with regard ...
The electrochemical performance of Li(Mn, M)PO4 (M = Co2+/3+, Ni2+/3+) was investigated with regard ...
Phase-pure carbon-coated Li2MnSiO4 cathode material has been prepared through a PEG-assisted solid s...
Lithium-excess and nano-sized Li2+xMn1−x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...
Lithium-excess and nano-sized Li2+xMn1-x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...
Homogeneous nanocomposites of nanocrystalline Li2MnSiO 4 and carbon as well as a carbon nanotubes-em...
Superior performance Li2MnSiO4 cathodes with flower-like morphology are prepared by hydrothermal rou...
Diversified and extended application of lithium-ion batteries require the development of innovative ...
Lithium transition-metal silicate materials are promising candidates for next generation Li-ion batt...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
Lithium transition-metal silicate materials are promising candidates for next generation Li-ion batt...
Size controlled, nanoparticulate Li2MnSiO4 cathodes were successfully prepared by sol–gel route. Eff...
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...
High capacity Li2MnSiO4/C nanocomposite with good rate performance was prepared via a facile sol-gel...
The electrochemical performance of Li(Mn, M)PO4 (M = Co2+/3+, Ni2+/3+) was investigated with regard ...
The electrochemical performance of Li(Mn, M)PO4 (M = Co2+/3+, Ni2+/3+) was investigated with regard ...
Phase-pure carbon-coated Li2MnSiO4 cathode material has been prepared through a PEG-assisted solid s...
Lithium-excess and nano-sized Li2+xMn1−x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...
Lithium-excess and nano-sized Li2+xMn1-x/2TiO4 (x = 0, 0.2, 0.4) cathode materials were synthesized ...
Homogeneous nanocomposites of nanocrystalline Li2MnSiO 4 and carbon as well as a carbon nanotubes-em...
Superior performance Li2MnSiO4 cathodes with flower-like morphology are prepared by hydrothermal rou...
Diversified and extended application of lithium-ion batteries require the development of innovative ...
Lithium transition-metal silicate materials are promising candidates for next generation Li-ion batt...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
Lithium transition-metal silicate materials are promising candidates for next generation Li-ion batt...