Strontium stannate titanate Sr(Sn, Ti)O3 is a solid solution between strontium stannate (SrSnO3) and strontium titanate (SrTiO3). In the present study, it was synthesized at low temperature by the polymeric precursor method, derived from the Pechini process. The powders were calcined in oxygen atmosphere in order to eliminate organic matter and to decrease the amount of SrCO3 formed during the synthesis. The powders were annealed at different temperatures to crystallize the samples into perovskites-type structures. All the compositions were studied by thermogravimetry (TG) and differential thermal analysis (DTA), infrared spectroscopy (IR) and X-ray diffraction (XRD). The lattice former, Ti4+ and Sn4+, had a meaningful influence in the mass...
SnO2-based materials are used as sensors, catalysts and in electro-optical devices. This work aims t...
Pb1-x Sr (x) )TiO3 powders with different compositions (x = 0, 0.10, 0.50, 0.90 and 1) were synthesi...
______________________________________________________________________________________ TiO2 and Sr(N...
SrSnO3 was synthesized by the polymeric precursor method with elimination of carbon in oxygen atmosp...
The influence of polymerization on the thermal decomposition of polymeric precursors and phase forma...
Sr(Ti,Nd)O(3) was synthesized in order to evaluate the influence of the amount of neodymium on the t...
Alkaline earth stannates have recently become important materials in ceramic technology due to its a...
The synthesis of strontium metastannate (SrSnO3) has been performed by coupling mechanical activatio...
In this work, the synthesis of Nd-doped SrSnO3 by the polymeric precursor method, with calcination b...
Perovskite type oxides have been intensively studied due to their interesting optical, electrical, a...
Precursor powders to obtain SrTiO3 were prepared by using 8-hydroxyquinoline precipitant agent. The ...
Ca(1-x)Sr(x)SnO(3) powders (x = 0, 0.25,0.50,0.75 and 1) were synthesized by the polymeric precursor...
By thermoanalysis (TGA and DSC) and X-ray powder diffraction it has been shown that the compounds Sr...
Strontium stannate (SrSnO 3 ), a perovskite material, was synthesized by the polymeric precursor met...
Titanates with the perovskite-type structure are expected as the most suitable materials which are c...
SnO2-based materials are used as sensors, catalysts and in electro-optical devices. This work aims t...
Pb1-x Sr (x) )TiO3 powders with different compositions (x = 0, 0.10, 0.50, 0.90 and 1) were synthesi...
______________________________________________________________________________________ TiO2 and Sr(N...
SrSnO3 was synthesized by the polymeric precursor method with elimination of carbon in oxygen atmosp...
The influence of polymerization on the thermal decomposition of polymeric precursors and phase forma...
Sr(Ti,Nd)O(3) was synthesized in order to evaluate the influence of the amount of neodymium on the t...
Alkaline earth stannates have recently become important materials in ceramic technology due to its a...
The synthesis of strontium metastannate (SrSnO3) has been performed by coupling mechanical activatio...
In this work, the synthesis of Nd-doped SrSnO3 by the polymeric precursor method, with calcination b...
Perovskite type oxides have been intensively studied due to their interesting optical, electrical, a...
Precursor powders to obtain SrTiO3 were prepared by using 8-hydroxyquinoline precipitant agent. The ...
Ca(1-x)Sr(x)SnO(3) powders (x = 0, 0.25,0.50,0.75 and 1) were synthesized by the polymeric precursor...
By thermoanalysis (TGA and DSC) and X-ray powder diffraction it has been shown that the compounds Sr...
Strontium stannate (SrSnO 3 ), a perovskite material, was synthesized by the polymeric precursor met...
Titanates with the perovskite-type structure are expected as the most suitable materials which are c...
SnO2-based materials are used as sensors, catalysts and in electro-optical devices. This work aims t...
Pb1-x Sr (x) )TiO3 powders with different compositions (x = 0, 0.10, 0.50, 0.90 and 1) were synthesi...
______________________________________________________________________________________ TiO2 and Sr(N...