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Structural Insight into Layer Gliding and Lattice Distortion in Layered Manganese Oxide Electrodes for Potassium-Ion Batteries

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posted on 2024-11-16, 05:52 authored by Qing Zhang, Christophe Didier, Wei Kong PangWei Kong Pang, Yajie Liu, Zhijie Wang, Sean Li, Vanessa PetersonVanessa Peterson, Jianfeng Mao, Zaiping GuoZaiping Guo
Potassium-ion batteries (PIBs) are an emerging, affordable, and environmentally friendly alternative to lithium-ion batteries, with their further development driven by the need for suitably performing electrode materials capable of reversibly accommodating the relatively large K+. Layer-structured manganese oxides are attractive as electrodes for PIBs, but suffer from structural instability and sluggish kinetics of K+ insertion/extraction, leading to poor rate capability. Herein, cobalt is successfully introduced at the manganese site in the KxMnO2 layered oxide electrode material and it is shown that with only 5% Co, the reversible capacity increases by 30% at 22 mA g-1 and by 92% at 440 mA g-1. In operando synchrotron X-ray diffraction reveals that Co suppresses Jahn-Teller distortion, leading to more isotropic migration pathways for K+ in the interlayer, thus enhancing the ionic diffusion and consequently, rate capability. The detailed analysis reveals that additional phase transitions and larger volume change occur in the Co-doped material as a result of layer gliding, with these associated with faster capacity decay, despite the overall capacity remaining higher than the pristine material, even after 500 cycles. These results assert the importance of understanding the detailed structural evolution that underpins performance that will inform the strategic design of electrode materials for high-performance PIBs.

Funding

Exploration of Advanced Nanostructures for Sodium-ion Battery Application

Australian Research Council

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High-voltage electrode materials for lithium-ion batteries

Australian Research Council

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High energy density, long life, safe lithium Ion battery for electric cars

Australian Research Council

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Potassium ion batteries for large scale renewable energy storage

Australian Research Council

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History

Citation

Zhang, Q., Didier, C., Pang, W., Liu, Y., Wang, Z., Li, S., Peterson, V. K., Mao, J. & Guo, Z. (2019). Structural Insight into Layer Gliding and Lattice Distortion in Layered Manganese Oxide Electrodes for Potassium-Ion Batteries. Advanced Energy Materials, 9 (30), 1900568-1-1900568-9.

Journal title

Advanced Energy Materials

Volume

9

Issue

30

Language

English

RIS ID

136915

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