Kinetic in situ neutron diffraction has been used to study the crystallization of amorphous Y67Fe33. The results show that partial crystallization first occurs close to 300 ◦C where the Y phase is formed. The entire sample crystallizes at 390 ◦C and new Bragg peaks appear, signifying the formation of a novel Y–Fe phase. This new phase coexists with Y to 450 ◦C when the Bragg peaks associated with this phase rapidly decrease in intensity and YFe2 also coexisting with Y, emerges as the final crystallization product. Rietveld refinement shows that the new phase crystallizes into a hexagonal structure, space group P63/mmc, with a = 12.8893(7) Å, c = 11.7006(9) Å and γ = 120◦
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
A recent study of (SmGd)Fe 14Si3 showed an anomalous x-ray diffraction pattern [P. C. Ezekwenna, G. ...
3 pages. Proceedings International Workshop Non-Crystalline Solids 2006, Gijon (Spain)International ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Temperature-resolved small angle neutron scattering (SANS) has been used to study the nucleation, g...
Temperature-resolved small angle neutron scattering (SANS) has been used to study the nucleation, g...
Temperature-resolved small angle neutron scattering (SANS) has been used to study thenucleation, gro...
Temperature-resolved small angle neutron scattering (SANS) has been used to study thenucleation, gro...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel ‘YFe’ intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
A recent study of (SmGd)Fe 14Si3 showed an anomalous x-ray diffraction pattern [P. C. Ezekwenna, G. ...
3 pages. Proceedings International Workshop Non-Crystalline Solids 2006, Gijon (Spain)International ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Kinetic in situ neutron diffraction has been used to study the crystallization ofamorphous Y67Fe33. ...
Temperature-resolved small angle neutron scattering (SANS) has been used to study the nucleation, g...
Temperature-resolved small angle neutron scattering (SANS) has been used to study the nucleation, g...
Temperature-resolved small angle neutron scattering (SANS) has been used to study thenucleation, gro...
Temperature-resolved small angle neutron scattering (SANS) has been used to study thenucleation, gro...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel ‘YFe’ intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
Crystallization of amorphous Y67Fe33 into the YFe2 C15 Laves phase via a novel 'YFe' intermediate ph...
A recent study of (SmGd)Fe 14Si3 showed an anomalous x-ray diffraction pattern [P. C. Ezekwenna, G. ...
3 pages. Proceedings International Workshop Non-Crystalline Solids 2006, Gijon (Spain)International ...