4.8 Article

Selective Interface Synthesis of Cobalt Metaphosphate Nanosheet Arrays Motivated by Functionalized Carbon Cloths for Fast and Durable Na/K-Ion Storage

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 29, 页码 34410-34418

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c08950

关键词

novel energy storage materials; cobalt metaphosphate; selective phase formation; sodium-and potassium-ion batteries; high performance

资金

  1. National Natural Science Foundation of China [51933007, 51673123, 22005346]
  2. National Key R&D Program of China [2017YFE0111500]
  3. State Key Laboratory of Polymer Materials Engineering [sklpme2020-1-02]
  4. Fundamental Research Funds for the Central Universities [YJ202118]

向作者/读者索取更多资源

A novel energy storage material based on cobalt metaphosphate nanosheet arrays self-supported on carbon cloths was successfully fabricated, demonstrating high reversibility and excellent cyclability in sodium ion storage, as well as superior performance in potassium ion storage compared to most reported anodes. The development of this high-performance nanomaterial has the potential to advance the practical applications of sodium/potassium-ion batteries.
Exploiting novel nanomaterials with fast and durable sodium/potassium ion storage capability is key to alleviate the application limitations of lithium-ion batteries. Herein, a novel energy storage material based on cobalt metaphosphate nanosheet arrays self-supported on carbon cloths [Co(PO3)(2) NSs/CC] is fabricated by a two-step strategy. This rationally designed strategy avoids the preparation of the complex {Co[O2P(OtBu)(2)](2)} n precursor, which significantly simplifies the synthesis process. The active CC acts not only as an electrically conductive substrate as usual but also as a functional basis to suppress PH3-involved reaction and to promote HPO3-involved reaction during the phosphating process, contributing to the formation of Co(PO3)(2). The mutual cross-linked porous Co(PO3)(2) nanosheets vertically grow on the surface of activated CC, ensuring sufficient electrolyte infiltration and fast electron transport among the electrodes. Sodium ion storage analysis for the Co(PO3)(2) NSs/CC electrode reveals a multi-step reaction mechanism with high reversibility, as reflected by the high reversible capacity (667 mA h g(-1) at 50 mA g(-1)) and excellent cyclability (with almost no capacity decay over 500 cycles). This novel electrode is also well capable of storing potassium ions, exhibiting high reversible capacity, which outperforms most reported anodes for potassium-ion batteries. The development of this novel high-performance nanomaterial would advance the performance of sodium/potassium-ion batteries toward practical applications.

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