Electrochemical performance and structural evolution of layered oxide cathodes materials for sodium-ion batteries: A review

CI Azambou, OO Obiukwu, PK Tsobnang… - Journal of Energy …, 2024 - Elsevier
The current climate-focused transition from non-renewable to renewable energies has
placed strong demands on renewable and sustainable energy sources. Lithium-ion batteries …

Enhanced CO2 capture over Li-containing β-NaFeO2 materials: effect of lithium nitrate addition

DG Araiza, F Plascencia-Hernández, H Pfeiffer - Fuel, 2022 - Elsevier
Herein, we present a feasible methodology for the improvement of the CO 2 capture
properties of sodium-ferrite-based materials through the addition of lithium nitrate. Initially …

Mn-doped NaFeO2 from a low purity-Fe precursor and its performance as cathode for Sodium-Ion Battery

F Rahmawati, AA Kusumaningtyas… - Inorganic and Nano …, 2020 - Taylor & Francis
Research to produce Mn-doped NaFeO2 was conducted from a low purity Fe-precursor
aims to check the reliability for the inexpensive-mass production of the compound. The …

β-NaFeO2@SrFe12O19 magnetic nanocomposite: synthesis, characterization, magnetic properties and antibacterial activity

A Ghorbani, AD Khalaji - Journal of Materials Science: Materials in …, 2022 - Springer
In this paper, new β-NaFeO2@ SrFe12O19 magnetic nanocomposite was prepared using
co-precipitation route accompanied by thermal decomposition at 950° C and its structural …

Synthesis of sodium iron oxide from sodium carbonate and ilmenite-based iron hydroxide via a wet milling method

D Taufik, A Vitadewi, D Idamayanti… - AIP Conference …, 2022 - pubs.aip.org
In this preliminary study, we investigated the effect of calcination temperatures on the
mineral phases and the microstructures of sodium iron oxide. The experiment was …