Katalog Plus
Bibliothek der Frankfurt UAS
Bald neuer Katalog: sichern Sie sich schon vorab Ihre persönlichen Merklisten im Nutzerkonto: Anleitung.
Dieses Ergebnis aus BASE kann Gästen nicht angezeigt werden.  Login für vollen Zugriff.

Tailoring Triphylite-NaFePO 4 Cathodes: A Pathway to Sustainable Sodium-Ion Batteries

Title: Tailoring Triphylite-NaFePO 4 Cathodes: A Pathway to Sustainable Sodium-Ion Batteries
Authors: Robert Kerr; Ramtin Hessam; Luke O'Dell; montserrat galceran; Youssof Shekibi; Lucas Rosson; Matthew Boot-Handford; Patrick Howlett; Maria Forsyth
Publication Year: 2026
Subject Terms: Electrochemistry; Functional materials; Polyanion cathodes; Lithium-ion batteries; Sodium-ion batteries; NaFePO4 cathodes; Repurposing LiFePO4 cathodes; Lithium leaching
Description: In this study, the properties of triphylite-NaFePO 4 (NFP) sodium-ion battery cathode powders produced via a chemical conversion route from various starting LiFePO 4 (LFP) powders are presented and compared. Lithium was first extracted from the LFP using sodium persulfate, where over 95% of Li was removed from the LFPs. The delithiated samples were then sodiated using different sodiating agents, namely, sodium thiosulfate and sodium iodide. The resulting NFP materials were characterized using X-ray diffraction (XRD) and inductively coupled plasma atomic emission spectroscopy (ICP-AES), before final electrochemical testing in a sodium half-cell configuration. The findings confirm that sodium iodide is an effective reagent for the complete chemical sodiation of FePO 4 without compromising the integrity of the carbon coating of the starting LFP. Furthermore, this work provides key insights to the processing parameters and the influence of the starting LFP morphological and electrochemical properties. Raman spectroscopy showed that the LFPs with a lower I D / I G ratio and platelet-like morphology resulted in better performing NFPs. Electrochemical results show that the best-performing LFP with a capacity of 155 mAh/g (93% of the theoretical capacity) produced the highest capacity NFP, delivering a capacity of 127 mAh/g (∼90% of the theoretical capacity).
Document Type: report
Language: unknown
DOI: 10.26187/deakin.31164340
Availability: https://doi.org/10.26187/deakin.31164340; https://figshare.com/articles/preprint/Tailoring_Triphylite-NaFePO_sub_4_sub_Cathodes_A_Pathway_to_Sustainable_Sodium-Ion_Batteries/31164340
Rights: CC BY 4.0
Accession Number: edsbas.487BF554
Database: BASE