4.5 Article

Enhanced Electrochemical Properties of Na0.67MnO2 Cathode for Na-Ion Batteries Prepared with Novel Tetrabutylammonium Alginate Binder

期刊

BATTERIES-BASEL
卷 8, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/batteries8010006

关键词

sodium-ion batteries; alginate; Na0.67MnO2; binder; cathode

资金

  1. State Education Development Agency, Republic of Latvia [1.1.1.2/VIAA/1/16/166]
  2. Institute of Solid-State Physics, University of Latvia as the Centre of Excellence from the European Union's Horizon 2020 Framework Program H2020-WIDESPREAD-01-2016-2017TeamingPhase2 [739508]

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Both binder and solid-electrolyte interface contribute to the improved cycling stability of electrodes for Na-ion batteries. In this study, a novel TBA alginate binder is used to prepare Na0.67MnO2 electrodes with enhanced electrochemical performance. Compared to other binders, TBA alginate-based electrodes exhibit higher gravimetric capacity and better rate capability.
Both the binder and solid-electrolyte interface play an important role in improving the cycling stability of electrodes for Na-ion batteries. In this study, a novel tetrabutylammonium (TBA) alginate binder is used to prepare a Na0.67MnO2 electrode for sodium-ion batteries with improved electrochemical performance. The ageing of the electrodes is characterized. TBA alginate-based electrodes are compared to polyvinylidene fluoride- (PVDF) and Na alginate-based electrodes and show favorable electrochemical performance, with gravimetric capacity values of up to 164 mAh/g, which is 6% higher than measured for the electrode prepared with PVDF binder. TBA alginate-based electrodes also display good rate capability and improved cyclability. The solid-electrolyte interface of TBA alginate-based electrodes is similar to that of PVDF-based electrodes. As the only salt of alginic acid soluble in non-aqueous solvents, TBA alginate emerges as a good alternative to PVDF binder in battery applications where the water-based processing of electrode slurries is not feasible, such as the demonstrated case with Na0.67MnO2.

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