Most insects with smooth or hairy adhesive pads have very little problems in attaching to smooth substrates. A careful selection of surface roughness, however, can effectively limit the contact area of the adhesive organs with the surface. In comparison to conventional toxin-based insect repelling methods, biologically inspired micro- and nanostructured insect repellent surface structures, thus, offer a great potential to effective and environmentally-friendly control insect pests. We here present a simple experimental approach to qualitatively and quantitatively analyse the efficiency of a micro- and nanorough surface structure. Nauphoeta cinerea and Gastrophysa viridula as model organisms for insects with smooth and hairy adhesive pads, r...
Many insects cling to vertical and inverted surfaces with pads that adhere by nanometre-thin films o...
Resurgence in bed bug infestations and widespread pesticide resistance have greatly renewed interest...
The putative functions and functional efficiencies of periodic nanostructures on the surface of cica...
[Extract] The next generation of non-contaminable and self-cleaning surfaces will require examinatio...
Insect climbing footpads are able to adhere to rough surfaces, but the details of this capability ar...
Insect pests cause considerable damage worldwide to plants, buildings and human health. This review ...
Understanding the tribology and adhesion between surfaces at a wide range of length scales is essent...
Many animals are able to scale smooth surfaces using adhesive structures on their feet. These organs...
Adhesion and friction have been measured on insect wings where contamination (water and/or contamina...
Insects possess adhesive organs that allow attachment to diverse surfaces. Efficient adhesion must b...
Insect pests cause considerable damage worldwide to plants, buildings and human health. This review ...
The ability of insects to successfully attach to a wide variety of surfaces with seemingly little t...
peer-reviewedContamination caused by insects on aircraft leading edge surfaces can result in prematu...
Many insects cling to vertical and inverted surfaces with pads that adhere by nanometre-thin films o...
Naturally occurring nano-structures is a much-neglected, but potentially rich, source of products th...
Many insects cling to vertical and inverted surfaces with pads that adhere by nanometre-thin films o...
Resurgence in bed bug infestations and widespread pesticide resistance have greatly renewed interest...
The putative functions and functional efficiencies of periodic nanostructures on the surface of cica...
[Extract] The next generation of non-contaminable and self-cleaning surfaces will require examinatio...
Insect climbing footpads are able to adhere to rough surfaces, but the details of this capability ar...
Insect pests cause considerable damage worldwide to plants, buildings and human health. This review ...
Understanding the tribology and adhesion between surfaces at a wide range of length scales is essent...
Many animals are able to scale smooth surfaces using adhesive structures on their feet. These organs...
Adhesion and friction have been measured on insect wings where contamination (water and/or contamina...
Insects possess adhesive organs that allow attachment to diverse surfaces. Efficient adhesion must b...
Insect pests cause considerable damage worldwide to plants, buildings and human health. This review ...
The ability of insects to successfully attach to a wide variety of surfaces with seemingly little t...
peer-reviewedContamination caused by insects on aircraft leading edge surfaces can result in prematu...
Many insects cling to vertical and inverted surfaces with pads that adhere by nanometre-thin films o...
Naturally occurring nano-structures is a much-neglected, but potentially rich, source of products th...
Many insects cling to vertical and inverted surfaces with pads that adhere by nanometre-thin films o...
Resurgence in bed bug infestations and widespread pesticide resistance have greatly renewed interest...
The putative functions and functional efficiencies of periodic nanostructures on the surface of cica...