Nb2O5 nanosheets are successfully synthesized through a facile hydrothermal reaction and followed heating treatment in air. The structural characterization reveals that the thickness of these sheets is around 50 nm and the length of sheets is 500~800 nm. Such a unique two dimensional structure enables the nanosheet electrode with superior performance during the charge-discharge process, such as high specific capacity (~184 mAh.g-1) and rate capability. Even at a current density of 1 A.g-1, the nanosheet electrode still exhibits a specific capacity of ~90 mAh.g-1. These results suggest the Nb2O5 nanosheet is a promising candidate for high-rate lithium ion storage applications
Renewable energy technologies have been a rapidly emerging option to meet future energy demand. Howe...
In this dissertation, nanostructured materials are examined for electrochemical energy storage devic...
Niobium-based oxides including Nb2O5, TiNbxO2+2.5x compounds, M-Nb-O (M = Cr, Ga, Fe, Zr, Mg, etc.) ...
Nb2O5 nanosheets are successfully synthesized through a facile hydrothermal reaction and followed he...
Nb2O5 nanosheets are successfully synthesized through a facile hydrothermal reaction and followed he...
Nb2O5/C nanosheets are successfully prepared through a mixing process and followed by heating treatm...
The morphology, size and phase of the material play a crucial role in its electrochemical performanc...
Orthorhombic Nb2O5 (T-Nb2O5) nanocrystallites are successfully fabricated through evaporation induce...
Energy storage has been the biggest obstacle in the widespread adoption of renewable energy resource...
Niobium pentoxide, Nb2O5, is a lithium-ion battery anode material that exhibits pseudocapacitance,pa...
International audiencePseudocapacitive charge storage is based on faradaic charge-transfer reactions...
Orthorhombic niobium pentoxide (T-Nb2O5) is known to be an effective anode material for Li-ion batte...
Orthorhombic niobium pentoxide (T-Nb2O5) is known to be an effective anode material for Li-ion batte...
Due to the high reliability and high theoretical capacity, lithium‐ion batteries (LIBs) have been wi...
The formation of a thin film electrode exhibiting high capacity and high rate capabilities is challe...
Renewable energy technologies have been a rapidly emerging option to meet future energy demand. Howe...
In this dissertation, nanostructured materials are examined for electrochemical energy storage devic...
Niobium-based oxides including Nb2O5, TiNbxO2+2.5x compounds, M-Nb-O (M = Cr, Ga, Fe, Zr, Mg, etc.) ...
Nb2O5 nanosheets are successfully synthesized through a facile hydrothermal reaction and followed he...
Nb2O5 nanosheets are successfully synthesized through a facile hydrothermal reaction and followed he...
Nb2O5/C nanosheets are successfully prepared through a mixing process and followed by heating treatm...
The morphology, size and phase of the material play a crucial role in its electrochemical performanc...
Orthorhombic Nb2O5 (T-Nb2O5) nanocrystallites are successfully fabricated through evaporation induce...
Energy storage has been the biggest obstacle in the widespread adoption of renewable energy resource...
Niobium pentoxide, Nb2O5, is a lithium-ion battery anode material that exhibits pseudocapacitance,pa...
International audiencePseudocapacitive charge storage is based on faradaic charge-transfer reactions...
Orthorhombic niobium pentoxide (T-Nb2O5) is known to be an effective anode material for Li-ion batte...
Orthorhombic niobium pentoxide (T-Nb2O5) is known to be an effective anode material for Li-ion batte...
Due to the high reliability and high theoretical capacity, lithium‐ion batteries (LIBs) have been wi...
The formation of a thin film electrode exhibiting high capacity and high rate capabilities is challe...
Renewable energy technologies have been a rapidly emerging option to meet future energy demand. Howe...
In this dissertation, nanostructured materials are examined for electrochemical energy storage devic...
Niobium-based oxides including Nb2O5, TiNbxO2+2.5x compounds, M-Nb-O (M = Cr, Ga, Fe, Zr, Mg, etc.) ...