Ultralong Lifespan and Ultrafast Li Storage: Single-Crystal LiFePO4 Nanomeshes

Small. 2016 Jan 27;12(4):516-23. doi: 10.1002/smll.201502743. Epub 2015 Dec 8.

Abstract

A novel LiFePO4 material, in the shape of a nanomesh, has been rationally designed and synthesized based on the low crystal-mismatch strategy. The LiFePO4 nanomesh possesses several advantages in morphology and crystal structure, including a mesoporous structure, its crystal orientation that is along the [010] direction, and a shortened Li-ion diffusion path. These properties are favorable for their application as cathode in Li-ion batteries, as these will accelerate the Li-ion diffusion rate, improve the Li-ion exchange between the LiFePO4 nanomesh and the electrolyte, and reduce the Li-ion capacitive behavior during Li intercalation. So the LiFePO4 nanomesh exhibits a high specific capacity, enhanced rate capability, and strengthened cyclability. The method developed here can also be extended to other similar systems, for instance, LiMnPO4 , LiCoPO4 , and LiNiPO4 , and may find more applications in the designed synthesis of functional materials.

Keywords: Li-ion batteries; LiFePO4; nanomeshes; nanostructures; structure-property relationships.

Publication types

  • Research Support, Non-U.S. Gov't