Interfacial hydrodynamic slippage is controlled by two factors say physical structure and chemical composition. Various studies have been conducted experimentally which try to connect the physical structure of the surface and its chemical property on the interfacial wettability. One such example is the Tunable wettability in surface-modified ZnO-based hierarchical nanostructures [2]. In which vertically aligned Nanoneedles and Nanonails were employed as a platform to determine the effect of surface structure. According to which a variation in static contact angles were observed as the cap size the nanonails constantly increased. Starting with a contact angle of 104° the contact angle first increases and then decreases, which means that the ...
Using molecular dynamics simulations of an atomistic water model, we study the interfacial hydrodyna...
Advancements in the fabrication of microfluidic and nanofluidic devices and the study of liquids in ...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
Interfacial hydrodynamic slippage is controlled by two factors say physical structure and chemical c...
Interfacial hydrodynamic slippage is controlled by two factors say physical structure and chemical c...
We explored a liquid slip, referred to as the Navier slip, at liquid–solid interface. Such a slip is...
The nanostructured surfaces have attracted much attention owing to its possibility of changing surfa...
Wettability of the solid surface is a very important property in the micro/nanoscale thermal fluidic...
학위논문 (박사)-- 서울대학교 대학원 : 재료공학부, 2013. 2. 윤재륜.We explored a liquid slip, referred to as the Navier sli...
We quantify some of the effects of patterned nanoscale surface texture on static contact angles, dyn...
We report molecular dynamics (MD) simulations of the dynamic wetting of nanoscale droplets on moving...
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...
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...
Using molecular dynamics simulations of an atomistic water model, we study the interfacial hydrodyna...
Advancements in the fabrication of microfluidic and nanofluidic devices and the study of liquids in ...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...
Interfacial hydrodynamic slippage is controlled by two factors say physical structure and chemical c...
Interfacial hydrodynamic slippage is controlled by two factors say physical structure and chemical c...
We explored a liquid slip, referred to as the Navier slip, at liquid–solid interface. Such a slip is...
The nanostructured surfaces have attracted much attention owing to its possibility of changing surfa...
Wettability of the solid surface is a very important property in the micro/nanoscale thermal fluidic...
학위논문 (박사)-- 서울대학교 대학원 : 재료공학부, 2013. 2. 윤재륜.We explored a liquid slip, referred to as the Navier sli...
We quantify some of the effects of patterned nanoscale surface texture on static contact angles, dyn...
We report molecular dynamics (MD) simulations of the dynamic wetting of nanoscale droplets on moving...
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...
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...
Using molecular dynamics simulations of an atomistic water model, we study the interfacial hydrodyna...
Advancements in the fabrication of microfluidic and nanofluidic devices and the study of liquids in ...
The gas–liquid interfaces distributed on a superhydrophobic (SHP) surface promote the effective slip...