The self-cleaning properties of ultra-hydrophobic surfaces are of great interest for technological applications. Specific surface roughness, essential for the dewetting effect, is not necessarily based on deterministic lotus leaf structures. Ultra-hydrophobicity also occurs on a large variety of stochastic, e. g., self-organized, roughness structures, which offers prospects for cost-effective manufacturing techniques (e.g., thin film deposition). This work addresses the development of roughness design algorithms, which deliver application-focused structural parameters, required for efficient and targeted manufacturing processes. Our approach is based on the assessment of wetting-relevant surface structures by a specific roughness analysis u...
We present first approaches and results to extend our measurement and analysis methodology for hydro...
Surface wettability is known that is not only governed by chemical structure but also by the surface...
The wetting of a material can be tuned by changing the roughness on its surface. Recent advances in ...
The self-cleaning properties of ultra-hydrophobic surfaces are of great interest for technological a...
Roughness structures are essential for a variety of functional surfaces, for example surfaces with e...
We describe a comprehensive measurement and analysis methodology for effectively predicting, definin...
Optical surfaces equipped with specific functional properties have attracted increasing importance o...
We have developed a novel approach to design ultra-hydrophobic surfaces with optical quality. The na...
With specific modeling, measurement, and analysis procedures, it is possible to predict, define, and...
With specific modelling, measurement, and analysis procedures it is possible to predict, define and ...
The Wenzel roughness parameter of isotropic Gaussian surfaces is analytically described in terms of ...
Hydrophobic surfaces with microscale roughness can be rendered ultrahydrophobic by the addition of s...
Self-cleaning surfaces have received a great attention and are highly desirable as they have endless...
In this paper, we present a general investigation of the effective potential for complete wetting on...
Surface roughness plays an important role in wetting phenomena. For a certain intrinsic material che...
We present first approaches and results to extend our measurement and analysis methodology for hydro...
Surface wettability is known that is not only governed by chemical structure but also by the surface...
The wetting of a material can be tuned by changing the roughness on its surface. Recent advances in ...
The self-cleaning properties of ultra-hydrophobic surfaces are of great interest for technological a...
Roughness structures are essential for a variety of functional surfaces, for example surfaces with e...
We describe a comprehensive measurement and analysis methodology for effectively predicting, definin...
Optical surfaces equipped with specific functional properties have attracted increasing importance o...
We have developed a novel approach to design ultra-hydrophobic surfaces with optical quality. The na...
With specific modeling, measurement, and analysis procedures, it is possible to predict, define, and...
With specific modelling, measurement, and analysis procedures it is possible to predict, define and ...
The Wenzel roughness parameter of isotropic Gaussian surfaces is analytically described in terms of ...
Hydrophobic surfaces with microscale roughness can be rendered ultrahydrophobic by the addition of s...
Self-cleaning surfaces have received a great attention and are highly desirable as they have endless...
In this paper, we present a general investigation of the effective potential for complete wetting on...
Surface roughness plays an important role in wetting phenomena. For a certain intrinsic material che...
We present first approaches and results to extend our measurement and analysis methodology for hydro...
Surface wettability is known that is not only governed by chemical structure but also by the surface...
The wetting of a material can be tuned by changing the roughness on its surface. Recent advances in ...