Using molecular dynamics (MD), we investigate the importance of liquid–vapor interface topography in designing low-friction nanoengineered superhydrophobic surfaces. Shear flow is simulated on patterned surfaces. The relationship between the effective slip length and bubble meniscus curvature is attained by generating entrapped bubbles with large protrusion angles on patterned surfaces with nanoholes. We show that protruding bubbles can induce significant friction, which hinders the slip characteristics produced on liquid–vapor interfaces. By comparing surfaces with nanoholes and nanopillars, we also demonstrate that the continuity of the liquid–vapor interface can greatly influence slip. Our MD results yield an asymptotic behavior of slip ...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
Structured hydrophobic surfaces may present high wall slippage due to the microscopic details of wet...
Structured hydrophobic surfaces may present high wall slippage due to the microscopic details of wet...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
With the recent important development of microfluidicsystems, miniaturization of flow devices has be...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
International audienceNonequilibrium molecular dynamics (NEMD) simulations have been performed to de...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
Structured hydrophobic surfaces may present high wall slippage due to the microscopic details of wet...
Structured hydrophobic surfaces may present high wall slippage due to the microscopic details of wet...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
With the recent important development of microfluidicsystems, miniaturization of flow devices has be...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
International audienceNonequilibrium molecular dynamics (NEMD) simulations have been performed to de...
The local slip behavior and flow fields near the gas-liquid interface (GLI) of a Newtonian liquid fl...
Structured hydrophobic surfaces may present high wall slippage due to the microscopic details of wet...
Structured hydrophobic surfaces may present high wall slippage due to the microscopic details of wet...