Javascript must be enabled to continue!
Superhydrophobic and Corrosion Behaviour of PVDF-CeO2 Composite Coatings
View through CrossRef
Composite coatings of polyvinylidene fluoride (PVDF)/CeO2 were developed by using the spray approach to explore the wetting and corrosion behaviour of coated materials for applications related to industry. PVDF was combined with different quantities of CeO2 nanoparticles followed by spraying onto glass, aluminium, and steel substrates. The sessile droplet method and microscopy studies were used to assess the wetting behaviour and morphology of the coated surfaces, respectively. The corrosion resistance of uncoated substrates coated with PVDF only was compared with those coated with PVDF/CeO2 nanoparticles through Tafel polarization techniques. In psi, the force of adhesion was measured between the coating layer and the substrates. The PVDF/CeO2-coated steel had a significantly greater water contact angle and lower contact angle hysteresis than coated aluminium and glass substrates, reaching 157 ± 2° and 8 ± 1°, respectively. The corrosion protection efficiency of the superhydrophobic PVDF/CeO2 coatings was considerably higher for steel and aluminium when compared with PVDF coatings. The PVDF/CeO2 coated substrates had modest adhesion between the coating layer and the substrates, but it was still acceptable. Furthermore, the PVDF/CeO2 coatings outperformed PVDF alone in terms of mechanical properties.
Title: Superhydrophobic and Corrosion Behaviour of PVDF-CeO2 Composite Coatings
Description:
Composite coatings of polyvinylidene fluoride (PVDF)/CeO2 were developed by using the spray approach to explore the wetting and corrosion behaviour of coated materials for applications related to industry.
PVDF was combined with different quantities of CeO2 nanoparticles followed by spraying onto glass, aluminium, and steel substrates.
The sessile droplet method and microscopy studies were used to assess the wetting behaviour and morphology of the coated surfaces, respectively.
The corrosion resistance of uncoated substrates coated with PVDF only was compared with those coated with PVDF/CeO2 nanoparticles through Tafel polarization techniques.
In psi, the force of adhesion was measured between the coating layer and the substrates.
The PVDF/CeO2-coated steel had a significantly greater water contact angle and lower contact angle hysteresis than coated aluminium and glass substrates, reaching 157 ± 2° and 8 ± 1°, respectively.
The corrosion protection efficiency of the superhydrophobic PVDF/CeO2 coatings was considerably higher for steel and aluminium when compared with PVDF coatings.
The PVDF/CeO2 coated substrates had modest adhesion between the coating layer and the substrates, but it was still acceptable.
Furthermore, the PVDF/CeO2 coatings outperformed PVDF alone in terms of mechanical properties.
Related Results
Investigating the Effect of High Pressures and Temperatures on Corrosion Inhibition for Water-Based Muds
Investigating the Effect of High Pressures and Temperatures on Corrosion Inhibition for Water-Based Muds
Corrosion is defined as gradual degradation of metal caused by a chemical or electrochemical reaction with its environment. In oil and gas sector, components can corrode at any sta...
Recent Patents on Preparation Methods and Mechanical Stability of Superhydrophobic Surface
Recent Patents on Preparation Methods and Mechanical Stability of Superhydrophobic Surface
Background:
Superhydrophobic surfaces have unique wettability and have shown
broad application prospects in many fields, such as self-cleaning and lubrication drag reduction.
Howev...
Graphitic Carbon Nitride/CeO2 Nanocomposite for Photocatalytic Degradation of Methyl Red
Graphitic Carbon Nitride/CeO2 Nanocomposite for Photocatalytic Degradation of Methyl Red
Nanosized ceria (CeO2) and a graphitic carbon nitride-loaded ceria (CeO2/GCN) nanocomposite were synthesized using a straightforward and efficient method and characterized by XRD, ...
Inverse CeO2/Ni Interface Engineering for Low-Temperature Acetic Acid Ketonization with Selective Acetone Formation
Inverse CeO2/Ni Interface Engineering for Low-Temperature Acetic Acid Ketonization with Selective Acetone Formation
Selective ketonization of biomass-derived carboxylic acids provides an attractive route for producing ketones through simultaneous C–C coupling and deoxygenation. However, conventi...
Stretchable Superhydrophobic Coatings
Stretchable Superhydrophobic Coatings
Superhydrophobic coatings are widely utilized in self-cleaning, liquid manipulation, anti-icing, water harvesting and many other fields. Coatings are considered to be superhydropho...
Antibacterial and sunlight-driven photocatalytic activity of graphene oxide conjugated CeO2 nanoparticles
Antibacterial and sunlight-driven photocatalytic activity of graphene oxide conjugated CeO2 nanoparticles
AbstractThis work focuses on the structural, morphological, optical, photocatalytic, antibacterial properties of pure CeO2 nanoparticles (NPs) and graphene oxide (GO) based CeO2 na...
Experimental and DFT Studies on Structural, Spectroscopic Properties of Cellulose Acetate and PVDF Blend Polymer Membrane: A Potential Wound Healing and Drug Release Material
Experimental and DFT Studies on Structural, Spectroscopic Properties of Cellulose Acetate and PVDF Blend Polymer Membrane: A Potential Wound Healing and Drug Release Material
ABSTRACT
Recently, extensive research has been conducted on wound healing and drug release materials. In this perspective, a cellulose acetate (CA) and a poly(vin...
Addition of Alloying Agents to Improve the Performance of Zn/Al Metallic Coated Steel
Addition of Alloying Agents to Improve the Performance of Zn/Al Metallic Coated Steel
This work set out to investigate the microstructural changes and corrosion mechanisms of several zinc-based sacrificial metallic coatings which are used within the strip steel indu...

