Local structure of a highly concentrated NaClO4 aqueous solution-type electrolyte for sodium ion batteries

Aqueous Na-ion batteries with highly concentrated NaClO4 aq. electrolytes are drawing attention as candidates for large-scale rechargeable batteries with a high safety level. However, the detailed mechanism by which the potential window in 17 m NaClO4 aq. electrolyte was expanded remains unclear. Th...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2020-01, Vol.22 (45), p.26452-26458
Hauptverfasser: Sakamoto, Ryo, Yamashita, Maho, Nakamoto, Kosuke, Zhou, Yongquan, Yoshimoto, Nobuko, Fujii, Kenta, Yamaguchi, Toshio, Kitajou, Ayuko, Okada, Shigeto
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Sprache:eng
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Zusammenfassung:Aqueous Na-ion batteries with highly concentrated NaClO4 aq. electrolytes are drawing attention as candidates for large-scale rechargeable batteries with a high safety level. However, the detailed mechanism by which the potential window in 17 m NaClO4 aq. electrolyte was expanded remains unclear. Therefore, we investigated the local structure around a Na+ ion or a ClO4− ion using X-ray diffraction combined with empirical potential structure refinement (EPSR) modelling and Raman spectroscopy. The results showed that in 17 m NaClO4 aq. electrolyte, most of the water molecules were coordinated to Na+ ions and few free water molecules were present. The 17 m NaClO4 aq. electrolyte could be interpreted as widening the potential window because almost all water molecules participated in hydration of the Na+ ions.
ISSN:1463-9076
1463-9084
DOI:10.1039/d0cp04376a