首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Ex situ XAS investigation of effect of binders on electrochemical performance of Li2Fe(SO4)(2) cathode
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Ex situ XAS investigation of effect of binders on electrochemical performance of Li2Fe(SO4)(2) cathode

机译:EX原位XA调查粘合剂对Li2Fe(SO4)(2)阴极电化学性能的影响

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With the objective of moving towards the commercialisation of Fe-based high voltage cathode Li2Fe(SO4)(2), the effect of fluorinated binder (polyvinylidene fluoride - PVDF) and non-fluorinated binder (polyacrylonitrile-PAN) was evaluated. First, the redox mechanism involved in the cycling of Li2Fe(SO4)(2) cathode in the presence of these two binders was investigated through ex situ X-ray Absorption Spectroscopy (XAS) studies which can directly determine oxidation state changes of the Fe ion during the charge-discharge process. Subsequently, the effect of the binders on the cycling and rate performance was evaluated. In the present work, consistent cycling performance with discharge capacity of 60 mA h g(-1) was recorded at low current rate of C/15. However, it was noted that at high charging rate the cell with binder retained only 29% of the discharge capacity in comparison to the cell without binder. This was attributed to the high charge transfer resistance of binders through cyclic voltammogram and electrochemical impedance spectroscopy studies. This in turn suggests the requirement of high conductivity binders for such sulphate based electrodes.
机译:随着朝向Fe基高压阴极Li2Fe(SO4)(2)的商业化的目的,评价氟化粘合剂(聚偏二氟乙烯 - PVDF)和非氟化粘合剂(聚丙烯腈-PAN)的作用。首先,通过例如可以直接确定Fe离子的氧化状态变化,研究了在这些两个粘合剂存在下涉及Li2Fe(SO4)(2)阴极的循环的氧化还原机制在这些两个粘合剂存在下进行。在充电 - 放电过程中。随后,评价粘合剂对循环和速率性能的影响。在本工作中,以低电流率C / 15记录排出容量的一致循环性能。然而,注意到,在高充电速率下,与没有粘合剂的电池相比,具有粘合剂的电池仅保留了29%的放电容量。这归因于粘合剂通过循环伏安图和电化学阻抗光谱研究的高电荷转移电阻。这反过来表明需要对这种硫酸盐基电极的高导电粘合剂的要求。

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