We have investigated the deposition of ZrO2 and Al2O3 films on a stainless steel (SS) substrate by spray pyrolysis method. The ZrO2 films were deposited from aqueous solution of zirconium dinitrate oxide. For Al2O3 films, a boehmite sol was used. The specific surface areas of samples were determined by the BET-method and sample surfaces were characterized by scanning electron microscopy and X-ray photoelectron spectroscopy. The spray pyrolysis method permits the preparation of ZrO2 and Al2O3 thin films on SS with good adhesion. This method enables preparation of oxide layers with relatively high specific surface area, suitable for applications as catalysts supports
Corrosion resistant ZrO2 coatings on 316L stainless steel sheets have been fabricated utilizing sono...
A novel laser assisted open atmosphere CVD/pyrolysis technique, for the synthesis of dense, hard nan...
In this work we developed and tested spray pyrolysis system for layers deposition. In the system we ...
Abstract. ZrO2 coatings for corrosion protection were deposited on 304 stainless steel by sol-gel me...
In the present work, the surface properties of various Al oxide films were investigated. The oxide f...
The complete oxidation of n-hexane in air over a stainless steel foil (SS) coated with a thin film o...
A combustion pyrolysis technique has been developed to deposit oxide films onto metal and ceramic su...
ZrO2 coatings for corrosion protection were deposited on 304 stainless steel by sol-gel method using...
Development of Cr-free coatings is an important issue for replacement of chromate conversion coating...
Abstract – Producing of ZrO2 coating by zol-gel method is presented in the paper. For solutions prep...
Design, development and scale-up of environmentally friendly coatings are very important in order to...
In this work, we studied an atomic layer deposition (ALD) process of ZrO2 with the precursors of tet...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
A thermal barrier coating (TBC) is used as thermal protection of metallic components exposed to hot ...
Active porous alumina coatings were obtained by deposition of boehmite sol on stainless steel (SS) s...
Corrosion resistant ZrO2 coatings on 316L stainless steel sheets have been fabricated utilizing sono...
A novel laser assisted open atmosphere CVD/pyrolysis technique, for the synthesis of dense, hard nan...
In this work we developed and tested spray pyrolysis system for layers deposition. In the system we ...
Abstract. ZrO2 coatings for corrosion protection were deposited on 304 stainless steel by sol-gel me...
In the present work, the surface properties of various Al oxide films were investigated. The oxide f...
The complete oxidation of n-hexane in air over a stainless steel foil (SS) coated with a thin film o...
A combustion pyrolysis technique has been developed to deposit oxide films onto metal and ceramic su...
ZrO2 coatings for corrosion protection were deposited on 304 stainless steel by sol-gel method using...
Development of Cr-free coatings is an important issue for replacement of chromate conversion coating...
Abstract – Producing of ZrO2 coating by zol-gel method is presented in the paper. For solutions prep...
Design, development and scale-up of environmentally friendly coatings are very important in order to...
In this work, we studied an atomic layer deposition (ALD) process of ZrO2 with the precursors of tet...
The talk presented at 29th Annual General Meeting Of Materials Research Society Of India And Nationa...
A thermal barrier coating (TBC) is used as thermal protection of metallic components exposed to hot ...
Active porous alumina coatings were obtained by deposition of boehmite sol on stainless steel (SS) s...
Corrosion resistant ZrO2 coatings on 316L stainless steel sheets have been fabricated utilizing sono...
A novel laser assisted open atmosphere CVD/pyrolysis technique, for the synthesis of dense, hard nan...
In this work we developed and tested spray pyrolysis system for layers deposition. In the system we ...