4.8 Article

A new sodium iron phosphate as a stable high-rate cathode material for sodium ion batteries

Journal

NANO RESEARCH
Volume 11, Issue 12, Pages 6197-6205

Publisher

TSINGHUA UNIV PRESS
DOI: 10.1007/s12274-018-2139-0

Keywords

sodium iron phosphate; low volume change; cathode material; long cycle; rate performance; sodium ion batteries

Funding

  1. Australian Research Council (ARC)

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Low-cost room-temperature sodium-ion batteries (SIBs) are expected to promote the development of stationary energy storage applications. However, due to the large size of Na+, most Na+ host structures resembling their Li+ counterparts show sluggish ion mobility and destructive volume changes during Na ion (de) intercalation, resulting in unsatisfactory rate and cycling performances. Herein, we report a new type of sodium iron phosphate (Na0.71Fe1.07PO4), which exhibits an extremely small volume change (similar to 1%) during desodiation. When applied as a cathode material for SIBs, this new phosphate delivers a capacity of 78 mA.h.g(-1) even at a high rate of 50 C and maintains its capacity over 5,000 cycles at 20 C. In situ synchrotron characterization disclosed a highly reversible solid-solution mechanism during charging/discharging. The findings are believed to contribute to the development of high-performance batteries based on Earth-abundant elements.

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