Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/129338
Title: Novel Direct Synthetic Route of 2D Prussian Blue Analogue, Nanocrystalline CuHCF, as Highly Effective Cathode Materials for Zn-ion Supercapacitors
Authors: Kaneva, M. V.
Bachina, A. K.
Lobinsky, A. A.
Issue Date: 2023
Publisher: Уральский федеральный университет
Ural Federal University
Citation: Kaneva M. V. Novel Direct Synthetic Route of 2D Prussian Blue Analogue, Nanocrystalline CuHCF, as Highly Effective Cathode Materials for Zn-ion Supercapacitors / M. V. Kaneva, A. K. Bachina, A. A. Lobinsky // Chimica Techno Acta. — 2023. — Vol. 10, No. 4. — № 202310419.
Abstract: Prussian blue analogues (PBAs) with 2D morphology of nanocrystals have attracted much attention for aqueous electrolyte-based energy storage devices. In this study, we synthesized a 2D Prussian blue analogue, nanocrystals of copper hexacyanoferrate (CuHCF), via a facile stepwise route involving a modified copper substrate of Cu(OH)2 nanorods that was used for the formation of two-dimensional CuHCF crystals. These materials were characterized by powder X-ray diffraction, energy dispersive X-ray microanalysis, X-ray photoelectron spectroscopy and scanning electron microscopy. The cathode based on 2D CuHCF exhibits high specific capacity (240 F/g (63.9 mAh/g) at 0.1 A/g) with excellent cycling stability (98.5% retention after 1000 charge-discharge cycles) in 3 M ZnSO4 electrolyte. The flat two-dimensional morphology of CuHCF provides sufficient ion diffusion channels and the numerous electroactive interfaces for intercalation charge storage.
Keywords: PRUSSIAN BLUE ANALOGUE
TRANSITION METALS
2D CRYSTALS
CATHODE MATERIALS
SUPERCAPACITORS
URI: http://elar.urfu.ru/handle/10995/129338
RSCI ID: https://www.elibrary.ru/item.asp?id=60040563
ISSN: 2411-1414
DOI: 10.15826/chimtech.2023.10.4.19
metadata.dc.description.sponsorship: This work was supported by the Russian Science Foundation (grant no. 22-23-20138).
The authors gratefully acknowledge to the Centre for Physical Methods of Surface Investigation of St. Petersburg State University. The SEM and PXRD study were conducted utilizing equipment at the Engineering Center of the St. Petersburg State Institute of Technology.
RSCF project card: 22-23-20138
Origin: Chimica Techno Acta. 2023. Vol. 10. № 4
Appears in Collections:Chimica Techno Acta

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