Logo image
TiO2-based microsphere with large pores to improve the electrochemical performance of Li-ion anodes
期刊文章   同儕審查

TiO2-based microsphere with large pores to improve the electrochemical performance of Li-ion anodes

Hung-Jui HsuChia-Chen Li
Ceramics International
2021

摘要

Anode Carbon Li-ion battery Nano titania Pores Electronic Optical and Magnetic Materials Ceramics and Composites Process Chemistry and Technology Surfaces Coatings and Films Materials Chemistry
A microsphere composed of nano-TiO 2 and carbon with a large pore size was constructed, and its potential as the anode active material for lithium-ion batteries was explored. The pores can promote the intake of the liquid electrolyte by the microsphere, improving the transport of electrons and ions, and the carbon surrounding the nano-TiO 2 in the skeleton of the microsphere can decrease the electronic resistance. At low charge/discharge rates of 0.5–2C, the cell made of the porous microspheres exhibited better stability of capacity—from low capacity retention of less than 70% to greater than 88% after 200 cycles—than the cell made of the as-received nano-TiO 2 . At high rates of 5–10C, the capacity of the cell made of the as-received nano-TiO 2 was contributed mainly by the capacitance effect. In contrast, the capacity of the cell made of the porous microspheres was contributed mainly by the electrochemical lithiation/delithiation, resulting in a higher capacity with good stability for at least 1000 cycles.

相關連結

指標

1 檢視次數

詳細資料

Logo image