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High Performance Nonaqueous Ca-Ion Cathodes Based on NASICON-NaV2(PO4)3 and the Way to Activate Their Structure

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Title
High Performance Nonaqueous Ca-Ion Cathodes Based on NASICON-NaV2(PO4)3 and the Way to Activate Their Structure
Issued Date
2025-12
Citation
Advanced Sustainable Systems, v.9, no.12
Type
Article
Author Keywords
Ca2+ intercalationCa-ion batteriesNaV2(PO4)3cathode materialnonaqueous electrolyte
Keywords
ELECTRODETIS2ELECTROCHEMICAL INTERCALATIONDIVALENT IONSCALCIUMHEXACYANOFERRATEBATTERIES
ISSN
2366-7486
Abstract

Calcium-ion batteries (CIBs) are gaining attention as a promising energy storage technology due to their high theoretical capacity, attributed to the divalency of calcium, low redox potential, and natural abundance. However, the limited availability of calcium insertion electrode materials and their tendency to exhibit low capacity or poor cyclability remain critical challenges. In this study, the activation mechanism underlying calcium ion storage in NASICON-type NaV2(PO4)3 structures are investigated using advanced structural analyses and elemental analyses. NaV2(PO4)3 is identified as an efficient cathode material for CIBs, demonstrating a reversible discharge capacity of 106.9 mAh g-1 at 10 mA g-1-an 82% improvement compared to the pristine material-while maintaining an average operating voltage of approximate to 3.5 V (vs Ca/Ca2+) and good cyclability in a nonaqueous electrolyte. These findings offer valuable insights into the design and development of advanced oxide-based cathodes, enhancing their performance through activation processes for nonaqueous CIBs.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/59980
DOI
10.1002/adsu.202500585
Publisher
Wiley
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홍승태
Hong, Seung-Tae홍승태

Department of Energy Science and Engineering

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