Improving on the very high temperatures used in solid-state synthesis routes to prepare CCTO ignited the idea of using oxalate routes which make use of organic solvents in the synthesis of CCTOX as oxalate intermediates to the decomposition product, CCTO. The use of commercial oxalic acids and oxalate has not only recorded a solubility problem which reflects on the size, shape, homogeneity, and morphology of the final product but also has an environmental impact originating from the solvents used. Both the composition and morphology of these inhomogeneities play a role in the behaviour of the final product, pointing out the need to assess the dependence of size, shape, homogeneity, and morphology and the material performance on the sample s...
Dielectric material CaCu3Ti4O12 (CCTO) prepared by solid state technique, was calcined at different ...
Oxalate precipitation is a powerful technique for actinide oxide preparation at either laboratory or...
Fine-particle $MTiO_3$, where M = Ca, Sr, Ba or Pb, were prepared by the pyrolysis of $MTiO(C_20_4)_...
A method of preparing the nanoparticles of $CaCu_3Ti_4O_{12}$ (CCTO) with the crystallite size varyi...
The perovskite CaCu3Ti4O12 (CCT) has been obtained after calcination of oxalate precursors at 900–10...
A complex oxalate precursor, CaCu3(TiO)(4)(C2O4)(8)center dot 9H(2)O, (CCT-OX), was synthesized and ...
The giant-dielectric-constant material CaCu3Ti4O12 (CCTO) has been synthesized by pyrolyzing an orga...
$CaCu_3Ti_4O1_2$ (CCTO) is a well known nonferroelectric material possessing high and nearly constan...
A stoichiometric amount of $CaCO_3,CuO,TiO_2$ was taken. The mixture was ground by agate mortar .On ...
CaCu3Ti4O12 was synthesized starting from a solution of TiO2 to which Ca and Cu nitrates were added....
A novel, cost effective, environment-friendly and energetically beneficial alternative method for th...
A novel, cost effective,environment-friendly and energetically beneficial alternative method for the...
CaCu3Ti4O12 (CCTO) compounds with a perovskite-type structure have been reported by many researchers...
Poster presented at the 12th Annual Conference of the Materials Research Society of Serbia - YUCOMAT...
AbstractOxalate precipitation is a powerful technique for actinide oxide preparation at either labor...
Dielectric material CaCu3Ti4O12 (CCTO) prepared by solid state technique, was calcined at different ...
Oxalate precipitation is a powerful technique for actinide oxide preparation at either laboratory or...
Fine-particle $MTiO_3$, where M = Ca, Sr, Ba or Pb, were prepared by the pyrolysis of $MTiO(C_20_4)_...
A method of preparing the nanoparticles of $CaCu_3Ti_4O_{12}$ (CCTO) with the crystallite size varyi...
The perovskite CaCu3Ti4O12 (CCT) has been obtained after calcination of oxalate precursors at 900–10...
A complex oxalate precursor, CaCu3(TiO)(4)(C2O4)(8)center dot 9H(2)O, (CCT-OX), was synthesized and ...
The giant-dielectric-constant material CaCu3Ti4O12 (CCTO) has been synthesized by pyrolyzing an orga...
$CaCu_3Ti_4O1_2$ (CCTO) is a well known nonferroelectric material possessing high and nearly constan...
A stoichiometric amount of $CaCO_3,CuO,TiO_2$ was taken. The mixture was ground by agate mortar .On ...
CaCu3Ti4O12 was synthesized starting from a solution of TiO2 to which Ca and Cu nitrates were added....
A novel, cost effective, environment-friendly and energetically beneficial alternative method for th...
A novel, cost effective,environment-friendly and energetically beneficial alternative method for the...
CaCu3Ti4O12 (CCTO) compounds with a perovskite-type structure have been reported by many researchers...
Poster presented at the 12th Annual Conference of the Materials Research Society of Serbia - YUCOMAT...
AbstractOxalate precipitation is a powerful technique for actinide oxide preparation at either labor...
Dielectric material CaCu3Ti4O12 (CCTO) prepared by solid state technique, was calcined at different ...
Oxalate precipitation is a powerful technique for actinide oxide preparation at either laboratory or...
Fine-particle $MTiO_3$, where M = Ca, Sr, Ba or Pb, were prepared by the pyrolysis of $MTiO(C_20_4)_...