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首页> 外文期刊>Journal of power sources >Mechanochemical Synthesis Of Namf_3 (m = Fe, Mn, Ni) And Their Electrochemical Properties As Positive Electrode Materials For Sodium Batteries
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Mechanochemical Synthesis Of Namf_3 (m = Fe, Mn, Ni) And Their Electrochemical Properties As Positive Electrode Materials For Sodium Batteries

机译:Namf_3(m = Fe,Mn,Ni)的机械化学合成及其作为钠电池正极材料的电化学性质

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Mechanical treatment was used as a nonconventional solid-state process for large-scale preparation of fluoride materials as an alternative to the hazardous high-pressure fluorination route. Sodium fluoroper-ovskites of Fe. Mn, and Ni were achieved by mechanical grinding of NaF and binary metal fluorides for different periods of time under Ar. The obtained monophases were characterized by XRD measurements, AAS, ICP-OES, and IC. The electrochemical performance of the achieved materials was tested in a Na half-cell under different operating conditions. It was revealed that mechanochemically inserted sodium is electrochemically active for the NaFeF_3 positive electrode composition. In this pilot study, NaFeF_3 showed an initial discharge capacity of 130 mA h g~(-1) at 0.2 mA cm~(-2).
机译:机械处理被用作非常规固态工艺,用于大规模制备氟化物材料,以替代危险的高压氟化途径。 Fe的氟钙钛矿酸钠。 Mn和Ni是通过在Ar下对NaF和二元金属氟化物进行不同时间的机械研磨而获得的。通过XRD测量,AAS,ICP-OES和IC表征获得的单相。在不同的操作条件下,在Na半电池中测试了所得材料的电化学性能。揭示了机械化学插入的钠对于NaFeF 3正极组合物具有电化学活性。在该初步研究中,NaFeF_3在0.2 mA cm〜(-2)时的初始放电容量为130 mA h g〜(-1)。

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