The novel material class of high entropy oxides with their unique and unexpected physicochemical properties is a candidate for energy applications. Herein, it is reported for the first time about the physico‐ and (photo‐) electrochemical properties of ordered mesoporous (CoNiCuZnMg)Fe₂O₄ thin films synthesized by a soft‐templating and dip‐coating approach. The A‐site high entropy ferrites (HEF) are composed of periodically ordered mesopores building a highly accessible inorganic nanoarchitecture with large specific surface areas. The mesoporous spinel HEF thin films are found to be phase‐pure and crack‐free on the meso‐ and macroscale. The formation of the spinel structure hosting six distinct cations is verified by X‐ray‐based characteriza...
Metal oxide‐based photoelectrodes for solar water splitting often utilize nanostructures to increase...
The new (Zn,Mg,Ni,Fe,Cd)Fe2O4 high entropy ferrite with average crystallite size 11.8 nm was synthe...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...
The novel material class of high entropy oxides with their unique and unexpected physicochemical pro...
Solar-assisted water splitting using photoelectrochemical cells (PECs) is one of the promising pathw...
High-entropy oxides are an upcoming research topic due to their broad range of possible crystal stru...
Electrochemical water splitting is a promising sustainable-energy technology, but the slow kinetics ...
Multicomponent rutile (P4$_{2}$/mnm) structured fluorides, containing 4 to 7 transition metals (Co, ...
High-entropy oxide nanofibers, based on equimolar (Cr,Mn,Fe,Co,Ni), (Cr,Mn,Fe,Co,Zn) and (Cr,Mn,Fe,N...
Spinel ferrite materials have an electronic band structure that is well suited for visible light-ind...
High-entropy materials are an emerging pathway in the development of high-activity (electro)catalyst...
Solar water splitting in a photoelectrochemical cell is a highly promising technology to produce cle...
Hexanary high-entropy oxides (HEOs) were synthesized through the mechanochemical sol-gel method for ...
In recent years, the concept of entropy stabilization of crystal structures in oxide systems has led...
The utilization of solar light for the photoelectrochemical and photocatalytic production of molecul...
Metal oxide‐based photoelectrodes for solar water splitting often utilize nanostructures to increase...
The new (Zn,Mg,Ni,Fe,Cd)Fe2O4 high entropy ferrite with average crystallite size 11.8 nm was synthe...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...
The novel material class of high entropy oxides with their unique and unexpected physicochemical pro...
Solar-assisted water splitting using photoelectrochemical cells (PECs) is one of the promising pathw...
High-entropy oxides are an upcoming research topic due to their broad range of possible crystal stru...
Electrochemical water splitting is a promising sustainable-energy technology, but the slow kinetics ...
Multicomponent rutile (P4$_{2}$/mnm) structured fluorides, containing 4 to 7 transition metals (Co, ...
High-entropy oxide nanofibers, based on equimolar (Cr,Mn,Fe,Co,Ni), (Cr,Mn,Fe,Co,Zn) and (Cr,Mn,Fe,N...
Spinel ferrite materials have an electronic band structure that is well suited for visible light-ind...
High-entropy materials are an emerging pathway in the development of high-activity (electro)catalyst...
Solar water splitting in a photoelectrochemical cell is a highly promising technology to produce cle...
Hexanary high-entropy oxides (HEOs) were synthesized through the mechanochemical sol-gel method for ...
In recent years, the concept of entropy stabilization of crystal structures in oxide systems has led...
The utilization of solar light for the photoelectrochemical and photocatalytic production of molecul...
Metal oxide‐based photoelectrodes for solar water splitting often utilize nanostructures to increase...
The new (Zn,Mg,Ni,Fe,Cd)Fe2O4 high entropy ferrite with average crystallite size 11.8 nm was synthe...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...