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Sustainable, low Ni-containing Mg-doped layered oxides as cathodes for sodium-ion batteries
(Royal Society of Chemistry, 2023)
The supply of battery-grade nickel to produce positive electrodes of sodium-ion batteries may soon become insufficient. For this reason, it is crucial to find new electrode materials that minimize its use or even fully ...
Applicability of Molybdite as an Electrode Material in Calcium Batteries: A Structural Study of Layer-type CaxMoO3
(American Chemical Society, 2018)
Calcium batteries could be an alternative to lithium analogues, but this technology is still in its infancy. It is
previously known that layered-type molybdite (α-MoO3) can intercalate hydrated calcium ions in aqueous ...
High-performance Ni-free sustainable cathode Na0.67Mg0.05Fe0.1Mn0.85O2 for sodium-ion batteries
(Wiley, 2023)
Having in mind the remarkable economic and environmental issues involved in the presence of nickel and cobalt metals in electrode compositions, new Na0.67Mg0.05Fe0.1NixMn0.85-xO2 (x= 0.0, 0.05, 0.1, 0.15) with a P2 type ...
Carbon nanomaterials for advanced lithium and sodium-ion batteries
(Elsevier, 2019)
Carbon forms have contributed substantially to the development of nanoscience and nanotechnology. Soon after their discovery, fullerenes, carbon nanotubes, and graphene have demonstrated to be versatile nanocarbons that ...
A new route to prepare graphene/iron oxide composite electrode for batteries
(Universidad de Córdoba, 2015)
Morphological adaptability of graphitic carbon nanofibers to enhance sodium insertion in a diglyme-based electrolyte
(Royal Society of Chemistry, 2019)
The recent introduction of glyme-based solvents has opened new opportunities to characterize graphitic
materials as anodes for sodium-ion batteries. We evaluated the electrochemical behaviour of a graphitized
carbon ...
Nanocintas de β-NaV6O15 como electrodo para baterías de magnesio y duales magnesio-sodio
(Universidad de Córdoba, 2017)
Further optimizing the microstructure of titania nanotube for sodium batteries
(Universidad de Córdoba, 2015)
Composite negative material comprising a transition metal malonate. Patente europea
(Oficina de Transferencia de Resultados de la Investigación, 2012)
Esta patente está basada en el uso de malonatos de metales de transición (hierro o cobalto) como electrodos negativos de bajo voltaje en pilas recargables secundarias de litio