We investigate surface kinetic roughening of copper films grown on Si(1 0 0) substrates at room temperature by means of atomic force microscopy study. Films were deposited at various durations by soft landing of size selected (~3 nm) nanoclusters using a state of the art nanocluster deposition system. The film growth exhibits two growth regimes with a crossover time of 40 min. In the first regime, surface morphologies show bimodal distribution and surface roughness shows a linear increase with growth exponent β = 0.14 ± 0.02. In the second regime, the height distribution becomes Gaussian and surface roughness shows a steep rise with high β value 0.83 ± 0.45. On the other hand, the roughness exponent α ranges from 0.68 ± 0.03 to 0.84 ± 0.01 ...
Thin films are structures consisting of one or several nanoscale atomic layers of material that are ...
We show that SEXAFS can be used to determine the growth law of subnanometric particles. In the case ...
Thin films are structures consisting of one or several nanoscale atomic layers of material that are ...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
The roughening kinetics of copper films synthesized by low pressure chemical vapor deposition (LPCVD...
Molecular dynamics simulations are used to study the growth and properties of Cu thin film deposited...
Copper nanoclusters have potencial for fabrication of nanostructured surfaces, which can be used in ...
Copper nanoclusters have potencial for fabrication of nanostructured surfaces, which can be used in ...
Copper nanoclusters have potencial for fabrication of nanostructured surfaces, which can be used in ...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Deposition and growth of Cu thin films on Si(1 0 0), Si(1 1 0) and Si(1 1 1) substrates are studied ...
The sputter deposition and the growth of thin copper films on float glass substrates are in situ stu...
Thin films are structures consisting of one or several nanoscale atomic layers of material that are ...
We show that SEXAFS can be used to determine the growth law of subnanometric particles. In the case ...
Thin films are structures consisting of one or several nanoscale atomic layers of material that are ...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
Growth front aspects of copper nanocluster films deposited with low energy onto silicon substrates a...
The roughening kinetics of copper films synthesized by low pressure chemical vapor deposition (LPCVD...
Molecular dynamics simulations are used to study the growth and properties of Cu thin film deposited...
Copper nanoclusters have potencial for fabrication of nanostructured surfaces, which can be used in ...
Copper nanoclusters have potencial for fabrication of nanostructured surfaces, which can be used in ...
Copper nanoclusters have potencial for fabrication of nanostructured surfaces, which can be used in ...
Here, we investigated the static and the dynamic wetting behaviors of copper (Cu) thin films deposit...
Deposition and growth of Cu thin films on Si(1 0 0), Si(1 1 0) and Si(1 1 1) substrates are studied ...
The sputter deposition and the growth of thin copper films on float glass substrates are in situ stu...
Thin films are structures consisting of one or several nanoscale atomic layers of material that are ...
We show that SEXAFS can be used to determine the growth law of subnanometric particles. In the case ...
Thin films are structures consisting of one or several nanoscale atomic layers of material that are ...