In hexagonal ferrite precursor fibres halide was found to be retained up to high temperatures, delaying the formation of the BaM (BaFe12O19) and SrM (SrFe12O19) phases, and resulting in a product with a grain size of 0.5 1 gm. This paper reports a halide free route for these fibres, using a nitrate stabilised sol precursor, from which the M phases formed at lower temperatures with smaller grain sizes. This sol was characterised and compared to the halide based sol, the evolution of the crystalline phases was studied and the hysteresis loops of the M ferrite fibres assessed by VSM. It was shown that retained halide inhibited the formation of the ferrite phase, as both SrM and BaM formed at a temperature 200degreesC lower than in the halide c...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The Z ferrite Sr3Co2Fe24O41, produced from a stoichiometric aqueous inorganic sol-gel precursor, is ...
The Z ferrite Sr3Co2Fe24O41, produced from a stoichiometric aqueous inorganic sol-gel precursor, is ...
Aligned fibers of barium and strontium M hexaferrite (BaFe12O19 and SrFe12O19) were manufactured fro...
The decomposition, shrinkage and evolution of aligned gel fibres with the stoichiometric composition...
Single phase BaM (BaFe12O19) and SrM (SrFe12O19) ferrites were made from stoichiometric aqueous sol-...
Single phase BaM (BaFe12O19) and SrM (SrFe12O19) ferrites were made from stoichiometric aqueous sol-...
Single phase BaM (BaFe12O19) and SrM (SrFe12O19) ferrites were made from stoichiometric aqueous sol-...
Gel fibres of barium M ferrite, BaFe12O19, were blow spun from an aqueous inorganic sol and calcined...
Hexagonal ferrites are a family of magnetic oxides which include M ferrite, the most commonly used m...
Aligned and random fibres of strontium hexaferrite (SrM, SrFe 12O19) and barium hexaferrite (BaM, Ba...
Aligned and random fibres of strontium hexaferrite (SrM, SrFe 12O19) and barium hexaferrite (BaM, Ba...
Aligned and random fibres of strontium hexaferrite (SrM, Si-Fe12O19) and barium hexaferrite (BaM, Ba...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The Z ferrite Sr3Co2Fe24O41, produced from a stoichiometric aqueous inorganic sol-gel precursor, is ...
The Z ferrite Sr3Co2Fe24O41, produced from a stoichiometric aqueous inorganic sol-gel precursor, is ...
Aligned fibers of barium and strontium M hexaferrite (BaFe12O19 and SrFe12O19) were manufactured fro...
The decomposition, shrinkage and evolution of aligned gel fibres with the stoichiometric composition...
Single phase BaM (BaFe12O19) and SrM (SrFe12O19) ferrites were made from stoichiometric aqueous sol-...
Single phase BaM (BaFe12O19) and SrM (SrFe12O19) ferrites were made from stoichiometric aqueous sol-...
Single phase BaM (BaFe12O19) and SrM (SrFe12O19) ferrites were made from stoichiometric aqueous sol-...
Gel fibres of barium M ferrite, BaFe12O19, were blow spun from an aqueous inorganic sol and calcined...
Hexagonal ferrites are a family of magnetic oxides which include M ferrite, the most commonly used m...
Aligned and random fibres of strontium hexaferrite (SrM, SrFe 12O19) and barium hexaferrite (BaM, Ba...
Aligned and random fibres of strontium hexaferrite (SrM, SrFe 12O19) and barium hexaferrite (BaM, Ba...
Aligned and random fibres of strontium hexaferrite (SrM, Si-Fe12O19) and barium hexaferrite (BaM, Ba...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The X and U phases of hexagonal ferrites are notoriously difficult to make as pure materials, and wh...
The Z ferrite Sr3Co2Fe24O41, produced from a stoichiometric aqueous inorganic sol-gel precursor, is ...
The Z ferrite Sr3Co2Fe24O41, produced from a stoichiometric aqueous inorganic sol-gel precursor, is ...