Spinel LiTiO was synthesized by a simple glycine-nitrate auto-combustion by applying aqueous medium and constricting the reactions in the pores of cellulose fibers. The products from the auto-combustion and further calcination at various temperatures were characterized by XRD, SEM, BET surface area and TEM examinations. Pure phase and well-crystallized nano-LiTiO oxides were obtained at a calcination temperature of 700 °C or higher. The 700 °C calcined one shows the best and high electrochemical performance, which reached a capacity of ∼125 mAh/g at 10 C discharge rate with fairly stable cycling performance even at 40 °C. Electrochemical impedance spectroscopy tests demonstrated that the surface reaction kinetics of LiTiO was improved signi...
Crystalline Li4Ti5O12 is synthesized by a method involving the freeze-drying and self-ignition of a ...
The synthesis of spinel-type lithium titanate, Li4Ti5O12, a promising anode material of secondary li...
Pure spinel-type lithium titanate, Li4Ti5O 12, was successfully prepared by calcining the precursor ...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Pure-phase spinel-type lithium titanate, Li4Ti5O12, was successfully fabricated by cellulose-assiste...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
The effect of the gel-drying temperature, annealing time at 900 °C and calcination temperature used ...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
The formation mechanism of a spinel-type lithium titanate Li 4Ti5O12 with TiO2 anatase as raw materi...
Pristine and carbon-coated Li4Ti5O12 oxide electrodes are synthesized by a cellulose-assisted combus...
Crystalline Li4Ti5O12 is synthesized by a method involving the freeze-drying and self-ignition of a ...
The synthesis of spinel-type lithium titanate, Li4Ti5O12, a promising anode material of secondary li...
Pure spinel-type lithium titanate, Li4Ti5O 12, was successfully prepared by calcining the precursor ...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Pure-phase spinel-type lithium titanate, Li4Ti5O12, was successfully fabricated by cellulose-assiste...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-s...
Nanocrystalline Li4Ti5O12 (LTO) crystallizing in cubic spinel-phase has been synthesized by single-...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
The effect of the gel-drying temperature, annealing time at 900 °C and calcination temperature used ...
Nanocrystalline Li4Ti5O12 with in situ incorporation of carbon and Ti3+ was synthesized by industry ...
The formation mechanism of a spinel-type lithium titanate Li 4Ti5O12 with TiO2 anatase as raw materi...
Pristine and carbon-coated Li4Ti5O12 oxide electrodes are synthesized by a cellulose-assisted combus...
Crystalline Li4Ti5O12 is synthesized by a method involving the freeze-drying and self-ignition of a ...
The synthesis of spinel-type lithium titanate, Li4Ti5O12, a promising anode material of secondary li...
Pure spinel-type lithium titanate, Li4Ti5O 12, was successfully prepared by calcining the precursor ...