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Porous La0.6Sr0.4Co0.2Fe0.8O3−δ ceramic films with different porosities were fabricated by constrained sintering on dense substrates of Gd-doped ceria at 900-1200 °C. 900-1200 °C
The effects of deposition parameters on the thin film growth have also been investigated using three dense substrates, Si (100), stainless steel and Quartz.
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The morphology of the Co3O4 NPs found to be different for the porous and dense substrate.
The Co3O4 NPs coated MgAl2O4 substrate-based sensor exhibited better alcohol sensitivity at low-temperature as compared to dense substrate counterpart.
After in-situ reduction of NiO and Fe3O4 in the dense substrate, the substrate turned to be porous, however, change in size was not large by mixing with SDC.
Target design allowed the exploration of the phase diagram by means of samples with different carbon initial density and exploiting the reflection of the shock wave at the interface between carbon and the denser substrate to increase pressure.
Thick film varistors based on the system ZnO Bi2O3 Sb2O3 have been prepared by screen printing technology on dense alumina substrates.
Coatings with thickness in the range 350 800 μm were sprayed onto dense alumina substrates.
Finally, results are presented concerning the effect of VM on spallation resistance, using coatings sprayed onto dense alumina substrates.
Yttria-stabilized zirconia (YSZ) thin films with a Zr/Y molar ratio of 0.84:0.16 were synthesized on both dense Si substrates and porous Ni YSZ anodes using the spin coating technique.
A micropipette was used to dispense a single 10 μL drop of each ink onto flat, dense, polycrystalline substrates representative of the anode components: yttria-8 mol% zirconia (8YSZ) and nickel oxide (NiO).
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