Surface instability, dynamics, and morphology in spontaneous dewetting of a thin liquid film on a chemically heterogeneous substrate are studied based on nonlinear simulations for a system subjected to a long range van der Waals attraction and soft short-range repulsion. Characteristics of dewetting by a heterogeneity are clearly contrasted with the spinodal dewetting on a homogeneous surface. In the presence of a chemical heterogeneity, the instability is engendered by the gradient of intermolecular interactions that lead to a microscale wettability contrast. The time scale of instability can be substantially less than the spinodal time scale, especially for thinner films close to the critical thickness, and it varies inversely with the po...
We report new experimental results on the dewetting of thin liquid films on nanoscale-structured bin...
Thin liquid films on non-wettable solid surfaces are not stable; rather, they are transformed by a s...
Thin liquid films on non-wettable solid surfaces are not stable; rather, they are transformed by a s...
The surface instability, dynamics, morphology, and spontaneous dewetting of a thin liquid film on ch...
A new mechanism for the surface instability and dewetting of thin films on chemically heterogeneous ...
The instability, dynamics, and morphological transitions of patterns in thin liquid films on physica...
Dynamics, stability, morphology, and dewetting of a thin film (<100 nm) under the influence of a...
The growth of instabilities and the initial stages of dewetting of volatile thin aqueous films on pa...
The spontaneous pattern formation and morphological transitions in thin liquid films on chemically h...
Various stages of evolution of surface instability leading to dewetting are investigated for thin (&...
Spontaneous formation of locally ordered patterns during dewetting of thin films on homogeneous and ...
The instability, dynamics, and dewetting engendered by the van der Waals forces in a thin liquid fil...
Various stages of evolution of the surface instability and pattern formation are investigated for un...
The instability, morphology and pattern formation engendered by the van der Waals force in a thin li...
Based on the complete 3D numerical solutions of the nonlinear thin film equation, we address the pro...
We report new experimental results on the dewetting of thin liquid films on nanoscale-structured bin...
Thin liquid films on non-wettable solid surfaces are not stable; rather, they are transformed by a s...
Thin liquid films on non-wettable solid surfaces are not stable; rather, they are transformed by a s...
The surface instability, dynamics, morphology, and spontaneous dewetting of a thin liquid film on ch...
A new mechanism for the surface instability and dewetting of thin films on chemically heterogeneous ...
The instability, dynamics, and morphological transitions of patterns in thin liquid films on physica...
Dynamics, stability, morphology, and dewetting of a thin film (<100 nm) under the influence of a...
The growth of instabilities and the initial stages of dewetting of volatile thin aqueous films on pa...
The spontaneous pattern formation and morphological transitions in thin liquid films on chemically h...
Various stages of evolution of surface instability leading to dewetting are investigated for thin (&...
Spontaneous formation of locally ordered patterns during dewetting of thin films on homogeneous and ...
The instability, dynamics, and dewetting engendered by the van der Waals forces in a thin liquid fil...
Various stages of evolution of the surface instability and pattern formation are investigated for un...
The instability, morphology and pattern formation engendered by the van der Waals force in a thin li...
Based on the complete 3D numerical solutions of the nonlinear thin film equation, we address the pro...
We report new experimental results on the dewetting of thin liquid films on nanoscale-structured bin...
Thin liquid films on non-wettable solid surfaces are not stable; rather, they are transformed by a s...
Thin liquid films on non-wettable solid surfaces are not stable; rather, they are transformed by a s...