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An eco-friendly ECC with high slag and polypropylene fiber content for high-tensile strain applications
An eco-friendly ECC with high slag and polypropylene fiber content for high-tensile strain applications
Nickel-based coatings as highly active electrocatalysts for hydrogen evolution reaction: A review on electroless plating cost-effective technique
Antibacterial properties of ZnO-containing bioactive glass coatings for biomedical applications
Preparation of active/intelligent packaging antibacterial film and hydrogen sulfide-sensitive indicator for trout fillets freshness based on copper nanoparticles
Preparation of active/intelligent packaging antibacterial film and hydrogen sulfide-sensitive indicator for trout fillets freshness based on copper nanoparticles
Biological and Corrosion Barrier Characteristics of Electrophoretically Obtained Zinc Oxide/Bioactive Glass Composite Coating on Treated AZ31 Mg Alloy: Toward Further In Vitro Study
Biological and Corrosion Barrier Characteristics of Electrophoretically Obtained Zinc Oxide/Bioactive Glass Composite Coating on Treated AZ31 Mg Alloy: Toward Further In Vitro Study
The effect of Cr-content on the corrosion behavior of Ti0.5Mo0.5CoNiMnCrx high-entropy alloy thin films deposited by direct current magnetron sputtering
Investigating the wettability control of fluorocarbon-coated nanofiber membranes by electrowetting process
The role of silica on the superiority of corrosion barrier performance and biological properties of sintered titania-silica composite coating electrophoretically deposited on 316L stainless steel
Corrosion performance of carbon steel and 304 stainless steel in activated methyldiethanolamine solution using autoclave tests
Enhanced photoelectrochemical cathodic protection of stainless steel under visible light using Co3O4-ZnO-modified TiO2 nanotubes
Enhanced photoelectrochemical cathodic protection of stainless steel under visible light using Co3O4-ZnO-modified TiO2 nanotubes
Enhanced photoelectrochemical cathodic protection of stainless steel under visible light using Co3O4-ZnO-modified TiO2 nanotubes
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