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Role of Defects on the Electrochemical Activity of ZnV$_2$O$_4$ Spinel Cathode for Secondary Zn‐Ion Batteries

Singh, Deepa; Hu, Yang 1; Parate, Shubham Kumar; Thareja, Sahil; Shang, Yuan; Nukala, Pavan; Fichtner, Maximilian P.; Kundu, Dipan; Barpanda, Prabeer 2
1 Helmholtz-Institut Ulm (HIU), Karlsruher Institut für Technologie (KIT)
2 Institut für Nanotechnologie (INT), Karlsruher Institut für Technologie (KIT)

Abstract (englisch):

Aqueous zinc-ion batteries are emerging as potential candidates to cater low-cost stationary energy storage due to the abundance, economic and ecological benignity of zinc. Among the various cathode materials, vanadium-based compounds have garnered significant attention owing to their structural diversity, Zn$^{2+}$ storage capability, and high theoretical capacity. The electrochemical activities in these cathodes can be tuned by modulating their structure, particle morphology, surface coatings and local structural (dis)ordering. This study probes the role of disorder on the electrochemical performance of ZnV$_2$O$_4$ spinel cathodes. Without any surface or structural optimization, ZnV$_2$O$_4$ delivers a specific capacity of 150 mAh g$^{−1}$ with stability over ≈1000 cycles at a current density of 1 A g$^{−1}$. Using operando and ex situ techniques – including electron microscopy, X-ray diffraction, X-ray absorption, and Raman spectroscopy – it is revealed that initial cycling induces a conversion reaction, forming a disordered Zn-deficient vanadium oxide phase. This phase enables reversible Zn$^{2+}$ (co)insertion, enhancing long-term performance. ... mehr


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Originalveröffentlichung
DOI: 10.1002/smll.202506524
Zugehörige Institution(en) am KIT Helmholtz-Institut Ulm (HIU)
Institut für Nanotechnologie (INT)
Publikationstyp Zeitschriftenaufsatz
Publikationsjahr 2025
Sprache Englisch
Identifikator ISSN: 1613-6810, 1613-6829
KITopen-ID: 1000189275
HGF-Programm 38.02.01 (POF IV, LK 01) Fundamentals and Materials
Erschienen in Small
Verlag John Wiley and Sons
Seiten 1
Vorab online veröffentlicht am 15.12.2025
Schlagwörter amorphization, aqueous Zn-ion batteries, conversion reaction, disorderness, spinel ZnV2O4
Nachgewiesen in Scopus
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