Despite the lower gravimetric capacity, Li 4 Ti 5 O 12 is an important alternative to graphite anodes, owing to its excellent high temperature stability, high rate capability, and negligible volume change. Although surfaces with lithium compositions exceeding Li 7 Ti 5 O 12 were observed previously during the first charge-discharge cycles, no stable reversible capacities were achieved during prolonged cycling. Here, structural engineering has been applied to enhance the electrochemical performance of epitaxial Li 4 Ti 5 O 12 thin films as compared to polycrystalline samples. Variation in the crystal orientation of the Li 4 Ti 5 O 12 thin films led to distinct differences in surface morphology with pyramidal, rooftop, or flat nanostructures...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
A promising cathode material for rechargeable batteries is LiMn2O4, which exhibits higher operating ...
Despite the lower gravimetric capacity, Li 4 Ti 5 O 12 is an important alternative to graphite anod...
Despite the lower gravimetric capacity, Li4Ti5O12 is an important alternative to graphite anodes, ow...
Using an epitaxial thin-film model system deposited by pulsed laser deposition (PLD), we study the L...
Lithium titanate Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> (LTO) is regarded as a promising alterna...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
The growth of crystalline Li-based oxide thin films on silicon substrates is essential for the integ...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
A commercial Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> material was modified by NH<sub>4</sub>F usi...
Lithium-ion batteries (LIBs) are nowadays widely used in many energy storage devices, which have cer...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
A promising cathode material for rechargeable batteries is LiMn2O4, which exhibits higher operating ...
Despite the lower gravimetric capacity, Li 4 Ti 5 O 12 is an important alternative to graphite anod...
Despite the lower gravimetric capacity, Li4Ti5O12 is an important alternative to graphite anodes, ow...
Using an epitaxial thin-film model system deposited by pulsed laser deposition (PLD), we study the L...
Lithium titanate Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> (LTO) is regarded as a promising alterna...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
The growth of crystalline Li-based oxide thin films on silicon substrates is essential for the integ...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
Li4Ti5O12 is well known to be a safe and efficient anode material for Li-ion batteries. A metal-orga...
A commercial Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> material was modified by NH<sub>4</sub>F usi...
Lithium-ion batteries (LIBs) are nowadays widely used in many energy storage devices, which have cer...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
Lithium titanium oxide thin films are increasingly popular anode materials in microbatteries and hyb...
A promising cathode material for rechargeable batteries is LiMn2O4, which exhibits higher operating ...