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Enhanced Electrochemical Performance of Sodium Manganese Ferrocyanide by Na-3(VOPO4)(2)F Coating for Sodium-Ion Batteries

机译:通过Na-3(vopo4)(2)F涂料用于钠离子电池的锰铁氰化钠的电化学性能提高

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摘要

Sodium manganese ferrocyanide NaxMn[Fe(CN)(6)](y), is an attractive cathode material for sodium-ion batteries. However, NaxMn[Fe(CN)(6)](y) prepared by simple coprecipitation of Mn2+ and [Fe(CN)(6)](4-) usually shows poor cycling performance, which hinders its practical application. In this work, electrochemical performance of a Na1.6Mn[Fe(CN)(6)](0.9) (PBM) sample prepared by the simple precipitation method was greatly improved by coating with Na-3(VOPO4)(2)F (NVOPF) via a solution precipitation method. The as-prepared PBM@NVOPF with a coating quantity of 2.0% molar ratio showed enhanced rate capability and superior cyclic stability. The discharge capacities of PBM@NVOPF were 101.5 mA h g(-1) (1 C) and 91.4 mA h g(-1) (10 C), with a capacity retention of 84.3% after 500 cycles at 1 C, 20 degrees C. It also exhibited excellent cyclic stability at elevated temperature with an initial capacity of 109.5 mA h g(-1) and a capacity retention of 78.8% after 200 cycles at 1 C, 55 degrees C. In comparison, uncoated PBM showed a discharge capacity of 105.7 mA h g(-1) (1 C) and 76.7 mA h g(-1) (10 C), with a capacity retention of only 42.0% after 500 cycles at 1 C, 20 degrees C. The high-temperature performance of bare PBM was very poor, and the capacity retention was only 35.7% after 40 cycles because of serious Mn/Fe dissolution which caused structural deterioration of PBM. NVOPF coating protected the PBM from suffering corrosion in the electrolyte, thus ensured the framework stability of PBM during long-term cycling and contributed to the excellent electrochemical performance.
机译:锰铁氰化钠NaxMN [Fe(CN)(6)](Y)是钠离子电池的吸引力的阴极材料。然而,通过简单的Mn2 +和[Fe(CN)(6)](4-)制备的NaxMn [Fe(CN)(6)](Y)通常显示出较差的循环性能,其阻碍了其实际应用。在这项工作中,通过用Na-3(Vopo4)(2)F(2)F(4)F( NVOPF)通过溶液沉淀法。具有2.0%摩尔比的AS制备的PBM @ NVOPF显示出增强的速率能力和卓越的循环稳定性。 PBM @ NVOPF的放电容量为101.5 mA Hg(-1)(1c)(1c)和91.4 mA Hg(10c)(10℃),500℃下的500℃,20℃的500次循环后的容量保持84.3%。它还在升高的温度下具有优异的循环稳定性,初始容量为109.5 mA Hg(-1),并且在1℃下的200次循环后的容量保持78.8%,55℃。相比之下,未涂覆的PBM显示出105.7的放电容量。 MA HG(-1)(1℃)和76.7 mA Hg(-1)(10℃),在1℃下500次循环后的容量保留只有42.0%,20℃。裸PBM的高温性能由于严重的Mn / Fe溶解,在40次循环后,容量滞留只有35.7%,导致PBM的结构恶化。 NVOPF涂层保护PBM免受电解质中的腐蚀,从而确保了在长期循环期间PBM的框架稳定性,并导致了优异的电化学性能。

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  • 来源
    《ACS applied materials & interfaces》 |2019年第41期|共8页
  • 作者单位

    Shanghai Jiao Tong Univ Dept Chem &

    Chem Engn Shanghai Electrochem Energy Devices Res Ctr Shanghai 200240 Peoples R China;

    Argonne Natl Lab Ctr Nanoscale Mat Argonne IL 60439 USA;

    Shanghai Jiao Tong Univ Dept Chem &

    Chem Engn Shanghai Electrochem Energy Devices Res Ctr Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Dept Chem &

    Chem Engn Shanghai Electrochem Energy Devices Res Ctr Shanghai 200240 Peoples R China;

    Argonne Natl Lab Ctr Nanoscale Mat Argonne IL 60439 USA;

    Beijing Inst Technol Sch Mat Sci &

    Engn Beijing 100081 Peoples R China;

    Shanghai Jiao Tong Univ Dept Chem &

    Chem Engn Shanghai Electrochem Energy Devices Res Ctr Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Dept Chem &

    Chem Engn Shanghai Electrochem Energy Devices Res Ctr Shanghai 200240 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    sodium-ion batteries; sodium manganese ferrocyanide; Na-3(VOPO4)(2)F; surface coating; cathode material;

    机译:钠离子电池;锰铁氰化钠;Na-3(vopo4)(2)f;表面涂层;阴极材料;

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