Achieving a high-performance Prussian blue analogue cathode with an ultra-stable redox reaction for ammonium ion storage

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Abstract

Aqueous rechargeable batteries with advantages of safety, low cost, and environmental kindness have displayed high feasibility of practical applications for large-scale energy storage. Developing high-performance electrode materials is a necessary gateway to commercially available batteries. Here, we demonstrate the controlled synthesis of sodium iron hexacyanoferrates, NaFeIIIFeII(CN)6 (Na-FeHCFs). Ball-cutting Na-FeHCF nanocubes are first synthesized and used as a cathode material for aqueous ammonium-ion batteries. Due to fast charge transfer and diffusion, the ball-cutting Na-FeHCF nanocubes exhibit a high discharge capacity of 62 mA h g-1 at 0.25 A g-1 and 77.4% capacity retention at 2 A g-1. Such excellent capacity and rate performance are superior to those of other Na-FeHCFs and the reported ammonium-ion intercalation cathodes. Furthermore, they present unparalleled cycling stability with no capacity loss over 50 000 cycles, thanks to the highly stable redox reaction of the high-spin nitrogen-coordinated FeII/FeIII (FeH) couple. This work supplies a new view to design high-performance cathode materials for ammonium ion storage.

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Li, C., Yan, W., Liang, S., Wang, P., Wang, J., Fu, L., … Huang, W. (2019). Achieving a high-performance Prussian blue analogue cathode with an ultra-stable redox reaction for ammonium ion storage. Nanoscale Horizons, 4(4), 991–998. https://doi.org/10.1039/c8nh00484f

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