Modification of surface wettability (ranging from complete wetting to complete non-wetting) of various surfaces is often required in many applications. Conventionally, it is done using a coating of suitable materials as per the requirement. In this approach, the old coating needs to be replaced every time by a new appropriate one. Alternatively, smart responsive surfaces can show tunable wettability with external stimulus. Electric field, temperature, light, pH, mechanical strain, etc. can be effectively used as external stimuli, and a suitable coating can be incorporated, which responses to the respective stimulus. These surfaces can be used to tune the surface wettability to any extent based on the magnitude of the stimulus. The primary r...
Wetting and non-wetting phenomena are ubiquitous in the natural and technological worlds, and their ...
Surfaces with patterned wettability contrast are important in industrial applications such as heat t...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Diverse unique surfaces exist in nature, e.g. lotus leaf, rose petal and rice leaf. They show simila...
Smart surfaces with dynamic and reversible wettability offer much versatility to meet various applic...
Switchable surfaces are highly useful materials with surface properties that change in response to e...
The design of smart surfaces with externally triggerable water/oil wettability and adhesion represen...
The design of smart surfaces with externally triggerable water/oil wettability and adhesion represen...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
cientists have long been fascinated by the “self-cleaning ” lotus leaf and the “fog-collecting ” Ste...
cientists have long been fascinated by the “self-cleaning ” lotus leaf and the “fog-collecting ” Ste...
Designing smart surfaces with tunable wettability has drawn much attention in recent years for acade...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Smart materials that can sense and respond to changes in the environment are of interest in numerous...
There are three different factors that can affect adhesion: the process fluid, the processing condit...
Wetting and non-wetting phenomena are ubiquitous in the natural and technological worlds, and their ...
Surfaces with patterned wettability contrast are important in industrial applications such as heat t...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Diverse unique surfaces exist in nature, e.g. lotus leaf, rose petal and rice leaf. They show simila...
Smart surfaces with dynamic and reversible wettability offer much versatility to meet various applic...
Switchable surfaces are highly useful materials with surface properties that change in response to e...
The design of smart surfaces with externally triggerable water/oil wettability and adhesion represen...
The design of smart surfaces with externally triggerable water/oil wettability and adhesion represen...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
cientists have long been fascinated by the “self-cleaning ” lotus leaf and the “fog-collecting ” Ste...
cientists have long been fascinated by the “self-cleaning ” lotus leaf and the “fog-collecting ” Ste...
Designing smart surfaces with tunable wettability has drawn much attention in recent years for acade...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...
Smart materials that can sense and respond to changes in the environment are of interest in numerous...
There are three different factors that can affect adhesion: the process fluid, the processing condit...
Wetting and non-wetting phenomena are ubiquitous in the natural and technological worlds, and their ...
Surfaces with patterned wettability contrast are important in industrial applications such as heat t...
The development of surfaces that have switchable properties, also known as smart surfaces, have been...