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首页> 外文期刊>Journal of solid state electrochemistry >Cathode material for sodium-ion batteries based on manganese hexacyanoferrate: the role of the binder component
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Cathode material for sodium-ion batteries based on manganese hexacyanoferrate: the role of the binder component

机译:基于锰己酰胺的钠离子电池的阴极材料:粘合剂组分的作用

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摘要

Sodium manganese hexacyanoferrate (NaMnHCF) was synthesized by a hydrothermal method and investigated as a cathode material for sodium-ion batteries. The morphology and the structure of NaMnHCF were investigated by X-ray diffraction, scanning electron microscopy, and EDX analysis. New composition of NaMnHCF cathode material for sodium-ion batteries with eco-friendly water-based binder consisting of conducting polymer poly-3,4-ethylenedioxythiopene/polystyrene sulfonate (PEDOT:PSS) dispersion and carboxymethyl cellulose (CMC) was proposed. The electrochemical properties of NaMnHCF cathode material with conductive polymer binder were investigated by cyclic voltammetry and galvanostatic charge-discharge, and the results were compared with the performance of a conventional PVDF-bound material. It was shown that the initial discharge capacity of electrodes with conductive binder is 130 mAh g(-1), whereas the initial discharge capacity of PVDF-bound electrodes was 109 mAh g(-1)(both at current density 120 mA g(-1), values normalized by NaMnHCF mass). The material with conductive binder also has better rate capability; however, it is losing in cycling capability to the electrode composition with conventional PVDF binder.
机译:通过水热法合成锰六氰基甲酸钠(NamNHCF),并作为钠离子电池的阴极材料进行研究。通过X射线衍射,扫描电子显微镜和EDX分析研究了NamNHCF的形态和结构。提出了一种由环型水基粘合剂的钠离子电池的NamnHCF阴极材料的新组合,包括导电聚合物聚 - 3,4-亚乙基苯甲酸苯甲酸氢苯甲酸氢苯甲酸乙烯/聚苯乙烯磺酸盐(PEDOT:PSS)分散和羧甲基纤维素(C MC)。通过循环伏安法和电镀电荷 - 放电研究了与导电聚合物粘合剂的NamnHCF阴极材料的电化学性质,并将结果与​​常规PVDF结合材料的性能进行了比较。结果表明,具有导电粘合剂的电极的初始放电容量是130mAhg(-1),而PVDF的电极的初始放电容量为109mAhg(-1)(电流密度120mA g( - 1),由NamnHCF质量标准化的值)。导电粘合剂的材料还具有更好的速率能力;然而,用常规PVDF粘合剂将循环能力失去循环能力。

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