© 2016 Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigated using a combination of spectroscopic and microscopic methods. These show that mechanical activation led to the creation of new surfaces and the comminution of the initial powder particles. Prolonged milling resulted in formation of larger agglomerates of BaTiO3 and bimodal particle size distribution, where BaTiO3 particles were significantly larger than those of iron-containing phases. Milling times of 210 min and above lead to a significant decrease in temperature of the oxidation of iron in the sample, indicating abrupt change in reactivity. Raman spectroscopy analysis has revealed that activation had a pronounced influence on Fe/B...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated nanocrystalline Fe/BaTiO3 is investigat...
Powder mixture of 50 mass % of barium titanate (BaTiO3) and 50 mass % of iron (Fe) was prepared b...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
© 2020 Authors. Multiferroic systems are attractive to the researches worldwide due to diversity of ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated nanocrystalline Fe/BaTiO3 is investigat...
Powder mixture of 50 mass % of barium titanate (BaTiO3) and 50 mass % of iron (Fe) was prepared b...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
© 2020 Authors. Multiferroic systems are attractive to the researches worldwide due to diversity of ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated BaTiO3 was investigated in this study. ...
The structure and lattice dynamics of mechanically activated nanocrystalline Fe/BaTiO3 is investigat...
Powder mixture of 50 mass % of barium titanate (BaTiO3) and 50 mass % of iron (Fe) was prepared b...