We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon deposition at room temperature on glass substrates. Time-dependent height-height correlation functions were extracted from atomic force microscopy images, and they demonstrated a nonstationary growth front of the film roughness associated with a temporal evolution of the local surface slope. As a result, we tried to correlate the roughness statistical properties such as the root-mean-square (rms) roughness sigma, the correlation length xi, and the local surface slope (rho approximate to sigma/xi) with the wetting behavior of the films' surfaces. The contact angle behavior was also studied by analyzing the variation of the energy of the syste...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Thin films of titanium, copper and silver with various roughnesses were prepared by physical vapour...
Thin films of titanium, copper and silver with various roughnesses were prepared by physical vapour...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Thin films of titanium, copper and silver with various roughnesses were prepared by physical vapour...
Thin films of titanium, copper and silver with various roughnesses were prepared by physical vapour...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
We studied the wetting behavior of silver and copper thin films versus their kinetic roughening upon...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Hydrophobic surfaces and coatings have attracted more and more interest in recent years due to their...
Thin films of titanium, copper and silver with various roughnesses were prepared by physical vapour...
Thin films of titanium, copper and silver with various roughnesses were prepared by physical vapour...