The proliferation of mobile technology, such as smartphones and electric vehicles, has made lithium-ion batteries (LIBs) the most dominant energy source on the market. The most popular type of battery being the graphite-based LIB. It is favorable due to its high volumetric and gravimetric capacity in conjunction with its high cycle stability at room temperature. Although this type of battery is expected to continue to grow in popularity, some of the limitations it possesses are low charging rate, structural instability, and the reduction of capacity as a consequence of long-term cycling. The need to find suitable anode alternatives has prompted the investigation of titanium oxide (TiO2) nanoparticles as a possible replacement. What makes Ti...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Graphite-based lithium-ion batteries (LIBs) are the most widely adopted battery technology in indust...
Here we summarize some results on the use of TiO nanostructures as anode materials for more efficien...
Rechargeable Lithium Ion Batteries (LIB) have garnered numerous interests in the last few decades du...
International audienceAnatase TiO2 nanoparticles were prepared by a simple sol-gel method at moderat...
E lectric vehicles and grid storage devices have potentialto become feasible alternatives to current...
International audienceAnatase TiO2 nanoparticles were prepared by a simple sol-gel method at moderat...
TiO2-based materials have been widely studied in the field of photocatalysis, sensors, and solar cel...
The particle size effects of TiO2 nanoparticles (TNPs), which are composed of small crystallites, on...
TiO2 has received significant research interest as an anode material for lithium ion batteries due t...
Titanium dioxide- (TiO2-) based nanomaterials have been widely adopted as active materials for photo...
The development of solar energy conversion technologies energy must be coupled with efficient storag...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Graphite-based lithium-ion batteries (LIBs) are the most widely adopted battery technology in indust...
Here we summarize some results on the use of TiO nanostructures as anode materials for more efficien...
Rechargeable Lithium Ion Batteries (LIB) have garnered numerous interests in the last few decades du...
International audienceAnatase TiO2 nanoparticles were prepared by a simple sol-gel method at moderat...
E lectric vehicles and grid storage devices have potentialto become feasible alternatives to current...
International audienceAnatase TiO2 nanoparticles were prepared by a simple sol-gel method at moderat...
TiO2-based materials have been widely studied in the field of photocatalysis, sensors, and solar cel...
The particle size effects of TiO2 nanoparticles (TNPs), which are composed of small crystallites, on...
TiO2 has received significant research interest as an anode material for lithium ion batteries due t...
Titanium dioxide- (TiO2-) based nanomaterials have been widely adopted as active materials for photo...
The development of solar energy conversion technologies energy must be coupled with efficient storag...
Various kinds of nanostructured materials have been extensively investigated as lithium ion battery ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...
Reducing the dimensions of electrode materials from the micron to the nanoscale can have a profound ...