Nanocomposites of crystalline-controlled TiO2carbon are prepared by a novel one-step approach and applied in anodes of lithium ion batteries. In our nanocomposite anodes, the Li+ capacity contribution from the TiO2 phase was enormous, above 400 mAh?g-1 (Li1+xTiO2, x>0.2), and the volumetric capacity was as high as 877 mAh?cm-3 with full voltage utilization to 0 V versus Li/Li+, which resulted in higher energy density than that of state-of-the-art titania anodes. For the first time, it was clearly revealed that the capacity at 1.2 and 2.0 V corresponded to Li+ storage at amorphous and crystalline TiO2, respectively. Furthermore, improvements in the rate capability and cycle performance were observed; this was attributed to resistance reducti...
TiO nanohybrid material with pillared nanostructure is prepared via an exfoliation/reassembly proces...
Nanotechnology produces hybrids with superior properties than its individual constituents. Here MWCN...
The proliferation of mobile technology, such as smartphones and electric vehicles, has made lithium-...
As lithium-ion batteries (LIB) see increasing use in areas beyond consumer electronics, such as the ...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
Morphology and electrochemical performance of mixed crystallographic phase titania nanotubes for pro...
TiO2-based materials have been widely studied in the field of photocatalysis, sensors, and solar cel...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
E lectric vehicles and grid storage devices have potentialto become feasible alternatives to current...
A rapid microwave hydrothermal process is adopted for the synthesis of titanium dioxide and reduced ...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
A new and effective method to prepare TiO2/C core–shell nanocomposites as active anode materials for...
TiO nanohybrid material with pillared nanostructure is prepared via an exfoliation/reassembly proces...
Nanotechnology produces hybrids with superior properties than its individual constituents. Here MWCN...
The proliferation of mobile technology, such as smartphones and electric vehicles, has made lithium-...
As lithium-ion batteries (LIB) see increasing use in areas beyond consumer electronics, such as the ...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
The role of homogeneity in ex situ grown conductive coatings and dimensionality in the lithium stora...
Morphology and electrochemical performance of mixed crystallographic phase titania nanotubes for pro...
TiO2-based materials have been widely studied in the field of photocatalysis, sensors, and solar cel...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
E lectric vehicles and grid storage devices have potentialto become feasible alternatives to current...
A rapid microwave hydrothermal process is adopted for the synthesis of titanium dioxide and reduced ...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
A new and effective method to prepare TiO2/C core–shell nanocomposites as active anode materials for...
TiO nanohybrid material with pillared nanostructure is prepared via an exfoliation/reassembly proces...
Nanotechnology produces hybrids with superior properties than its individual constituents. Here MWCN...
The proliferation of mobile technology, such as smartphones and electric vehicles, has made lithium-...