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Nanostructured ZnFe2O4: An Exotic Energy Material
by
Bohra, Murtaza
, Arras, Rémi
, Alman, Vidya
in
Cations
/ Chemical Physics
/ Computational Physics
/ Condensed Matter
/ Crystal lattices
/ Data storage
/ Electronic devices
/ Energy demand
/ energy harvesting and storage
/ Energy storage
/ Fabrication
/ Hydrogen production
/ inverted ZnFe2O4
/ Lithium-ion batteries
/ Materials Science
/ Metal ions
/ Metals
/ Morphology
/ nanostructuration
/ Nanostructure
/ Optical properties
/ Oxidation
/ Particle size
/ Physical properties
/ Physics
/ Rechargeable batteries
/ Review
/ Smart materials
/ Storage batteries
/ Thermal stability
/ Toxicity
/ Valence
/ Water splitting
/ Zinc ferrites
2021
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Nanostructured ZnFe2O4: An Exotic Energy Material
by
Bohra, Murtaza
, Arras, Rémi
, Alman, Vidya
in
Cations
/ Chemical Physics
/ Computational Physics
/ Condensed Matter
/ Crystal lattices
/ Data storage
/ Electronic devices
/ Energy demand
/ energy harvesting and storage
/ Energy storage
/ Fabrication
/ Hydrogen production
/ inverted ZnFe2O4
/ Lithium-ion batteries
/ Materials Science
/ Metal ions
/ Metals
/ Morphology
/ nanostructuration
/ Nanostructure
/ Optical properties
/ Oxidation
/ Particle size
/ Physical properties
/ Physics
/ Rechargeable batteries
/ Review
/ Smart materials
/ Storage batteries
/ Thermal stability
/ Toxicity
/ Valence
/ Water splitting
/ Zinc ferrites
2021
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Do you wish to request the book?
Nanostructured ZnFe2O4: An Exotic Energy Material
by
Bohra, Murtaza
, Arras, Rémi
, Alman, Vidya
in
Cations
/ Chemical Physics
/ Computational Physics
/ Condensed Matter
/ Crystal lattices
/ Data storage
/ Electronic devices
/ Energy demand
/ energy harvesting and storage
/ Energy storage
/ Fabrication
/ Hydrogen production
/ inverted ZnFe2O4
/ Lithium-ion batteries
/ Materials Science
/ Metal ions
/ Metals
/ Morphology
/ nanostructuration
/ Nanostructure
/ Optical properties
/ Oxidation
/ Particle size
/ Physical properties
/ Physics
/ Rechargeable batteries
/ Review
/ Smart materials
/ Storage batteries
/ Thermal stability
/ Toxicity
/ Valence
/ Water splitting
/ Zinc ferrites
2021
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Journal Article
Nanostructured ZnFe2O4: An Exotic Energy Material
2021
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Overview
More people, more cities; the energy demand increases in consequence and much of that will rely on next-generation smart materials. Zn-ferrites (ZnFe2O4) are nonconventional ceramic materials on account of their unique properties, such as chemical and thermal stability and the reduced toxicity of Zn over other metals. Furthermore, the remarkable cation inversion behavior in nanostructured ZnFe2O4 extensively cast-off in the high-density magnetic data storage, 5G mobile communication, energy storage devices like Li-ion batteries, supercapacitors, and water splitting for hydrogen production, among others. Here, we review how aforesaid properties can be easily tuned in various ZnFe2O4 nanostructures depending on the choice, amount, and oxidation state of metal ions, the specific features of cation arrangement in the crystal lattice and the processing route used for the fabrication.
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