Revealing Diffusion-Dominated Charge Storage in Ultrathin V2O5 Electrodes for Aqueous Zn-Ion Batteries

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초록

In this work, we report the development of an additive-free and electrolyte/electrode interface-sensitive vanadium pentoxide (V2O5) cathode for aqueous zinc-ion batteries (ZIBs), fabricated via alternating current electrophoretic deposition (AC-EPD) onto stainless steel foil. X-ray diffraction analysis confirms the formation of highly crystalline, phase-pure orthorhombic V2O5 with preferential orientation. Electrochemical testing shows stable and reversible Zn2+ intercalation, with the electrode delivering similar to 120 mAh/g at 0.5 C and excellent rate performance within a narrower 1.0-1.5 V window, instead of the typical 0.1-1.5 V range. Scan rate-dependent cyclic voltammetry and b-value analysis reveal that the charge storage in the ultrathin V2O5 film is predominantly governed by diffusion-controlled processes. This behavior aligns with the intrinsic layered crystal structure of V2O5, which facilitates bulk Zn2+ intercalation rather than surface-limited capacitive reactions. This study shows that ultrathin V2O5 electrodes made by AC-EPD deliver high capacity and stable Zn-ion storage. Despite their thinness, charge storage is mainly diffusion-controlled due to the layered structure. To our knowledge, this is the first report demonstrating that diffusion-controlled Zn2+ intercalation remains the dominant mechanism in ultrathin, binder-free V2O5 electrodes, thereby establishing a definitive baseline for structure-function analyses in layered oxides. This provides new insight into bulk intercalation behavior in interface-sensitive systems.

키워드

ELECTROPHORETIC DEPOSITIONCATHODE MATERIALLIFE
제목
Revealing Diffusion-Dominated Charge Storage in Ultrathin V2O5 Electrodes for Aqueous Zn-Ion Batteries
저자
Lim, YujinPark, Byoung-Nam
DOI
10.1021/acs.jpcc.5c04232
발행일
2025-07-23
유형
Article
저널명
The Journal of Physical Chemistry C
129
31
페이지
13903 ~ 13909