Acebo L, Drewett N E, Saurel D, Bonilla F, Rojo T, Galceran M
Center for Cooperative Research on Alternative Energies (CIC EnergiGUNE), Parque Tecnológico de Alava, Basque Research and Technology Alliance (BRTA), Vitoria-Gasteiz, Spain.
Departamento de Química Orgánica e Inorgánica, Universidad del País Vasco UPV/EHU, Bilbao, Spain.
Front Chem. 2023 Apr 6;11:1151656. doi: 10.3389/fchem.2023.1151656. eCollection 2023.
Transition metal (TM) layered oxides constitute a promising family of materials for use in Na-ion battery cathodes. Here O3-Na (NiMnFe) O was synthesised using optimised sol-gel and solid-state routes, and the physico- and electrochemical natures of the resulting materials were thoroughly studied. Significant differences in electrochemical behaviour were observed, and the use of in operando XRD determined this stemmed from the suppression of the P3 phase in the sol-gel material during cycling. This was attributable to differences in the degree of transition metal migration in the materials ensuing from the selection of synthetic route. This demonstrates that not only the choice of material, but also that of synthesis route, can have dramatic impact on the resulting structural and electrochemical nature, making such considerations critical in the future development of advanced Na-ion cathode materials.
过渡金属(TM)层状氧化物是一类很有前景的用于钠离子电池阴极的材料。在此,通过优化的溶胶-凝胶法和固态法合成了O3-Na(NiMnFe)O,并对所得材料的物理和电化学性质进行了深入研究。观察到电化学行为存在显著差异,通过原位XRD确定这源于循环过程中溶胶-凝胶材料中P3相的抑制。这归因于合成路线选择导致的材料中过渡金属迁移程度的差异。这表明不仅材料的选择,合成路线的选择也会对所得结构和电化学性质产生巨大影响,使得这些考虑因素在先进钠离子阴极材料的未来发展中至关重要。