Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a variety of methods. Average crystallite size continuously decreased with increased activation time to around 20 nm after 120 min activation, while mesopore volume and specific surface area increased accordingly. Higher activation times lead to increased agglomeration of nanoparticles to form agglomerates of around 2 mu m in size, ultimately producing a relatively stable powder, which exhibits lower microstrain than powders activated for shorter periods of time. Raman spectroscopy shows that the behavior of TO2 and TO4 modes is consistent with a decrease in particle size, while behavior of the nonpolar TO3 mode is markedly different, indicating rel...
In this study, microstructure evolution and dielectric properties of SrTiO3 ceramic have been invest...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
In this study, microstructure evolution and dielectric properties of SrTiO3 ceramic have been invest...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
In this study, mechanical activation process was used for intimate mixing as well as producing finel...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
In this study, microstructure evolution and dielectric properties of SrTiO3 ceramic have been invest...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
In this study, microstructure evolution and dielectric properties of SrTiO3 ceramic have been invest...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
Structural changes caused by mechanical activation of SrTiO3 powders were investigated using a varie...
In this study, mechanical activation process was used for intimate mixing as well as producing finel...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
In this study, microstructure evolution and dielectric properties of SrTiO3 ceramic have been invest...
Strontium-titanate powder was mechanically activated in a planetary ball mill for 0, 5, 10, 30, 60, ...
In this study, microstructure evolution and dielectric properties of SrTiO3 ceramic have been invest...