Nanostructured MnFe2O4 was prepared by high-energy ball milling of a stoichiometric mixture of MnO and Fe2O3 powders and characterized by XRD, TEM and TGA techniques. The ball milling process leads to strained nanocrystals with an average size of about 5 nm, agglomerated in sizes of about 100 nm. It was used with mechanically activated Na2CO3 to produce hydrogen from water in the temperature range 973–1073 K. At 1023K the mixture shows a hydrogen production five times higher than that obtained with manganese ferrite prepared by thermally activated solid-state reaction
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Chemical energy storage by water splitting is a p...
Hydrogen production by water splitting with MnFe2O4/Na2CO3 system was studied at 973 K. An intermedi...
Nanostructured manganese ferrites (MnFe2O4) with diameters in the range of 45-30 nm were synthesized...
Nanostructured MnFe2O4 was prepared by high-energy ball milling of a stoichiometric mixture of MnO a...
Nanocrystalline MnFe2O4 particles were synthesized by a high-energy ball milling technique, starting...
The influence of long-term milling of a mixture of MnCO3 and α-Fe2O3, and of MnO2 and α-Fe2O3 powder...
A thermal treatment at 900 °C (under nitrogen) of a milled mixture MnO-Fe2O3 yields MnFe2O4 mainly a...
Single-crystals of MnFe2O4 nanorods with an average diameter of 20 nm and length of 250 nm were synt...
The multi-step thermochemical water splitting cycle based on MnFe2O4 Na2CO3 has emerged as an attrac...
This study reports the synthesis of three kinds of manganese-doped magnetic ferrite nanoparticles (M...
Water splitting for the production of oxygen is a promising strategy to advance many renewable ene...
Manganese ferrite, MnFe2O4 have been prepared by a soft mechanochemical route from mixture of (a) Mn...
Manganese ferrite (MnFe2O4) with rough surface was synthesized by a simple solvothermal method. The ...
Spinel manganese ferrite (MnFe2O4) nanopowder is widely used in many fields, such as the targeted dr...
ABSTRACT: The catalytic effects of MnFe2O4 nanoparticles on the hydrogen storage properties of MgH2−...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Chemical energy storage by water splitting is a p...
Hydrogen production by water splitting with MnFe2O4/Na2CO3 system was studied at 973 K. An intermedi...
Nanostructured manganese ferrites (MnFe2O4) with diameters in the range of 45-30 nm were synthesized...
Nanostructured MnFe2O4 was prepared by high-energy ball milling of a stoichiometric mixture of MnO a...
Nanocrystalline MnFe2O4 particles were synthesized by a high-energy ball milling technique, starting...
The influence of long-term milling of a mixture of MnCO3 and α-Fe2O3, and of MnO2 and α-Fe2O3 powder...
A thermal treatment at 900 °C (under nitrogen) of a milled mixture MnO-Fe2O3 yields MnFe2O4 mainly a...
Single-crystals of MnFe2O4 nanorods with an average diameter of 20 nm and length of 250 nm were synt...
The multi-step thermochemical water splitting cycle based on MnFe2O4 Na2CO3 has emerged as an attrac...
This study reports the synthesis of three kinds of manganese-doped magnetic ferrite nanoparticles (M...
Water splitting for the production of oxygen is a promising strategy to advance many renewable ene...
Manganese ferrite, MnFe2O4 have been prepared by a soft mechanochemical route from mixture of (a) Mn...
Manganese ferrite (MnFe2O4) with rough surface was synthesized by a simple solvothermal method. The ...
Spinel manganese ferrite (MnFe2O4) nanopowder is widely used in many fields, such as the targeted dr...
ABSTRACT: The catalytic effects of MnFe2O4 nanoparticles on the hydrogen storage properties of MgH2−...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Chemical energy storage by water splitting is a p...
Hydrogen production by water splitting with MnFe2O4/Na2CO3 system was studied at 973 K. An intermedi...
Nanostructured manganese ferrites (MnFe2O4) with diameters in the range of 45-30 nm were synthesized...