We present a nanostructured ``super surface'' fabricated using a simple recipe based on deep reactive ion etching of a silicon wafer. The topography of the surface is inspired by the surface topographical features of dragonfly wings. The super surface is comprised of nanopillars 4 mm in height and 220 nm in diameter with random inter-pillar spacing. The surface exhibited superhydrophobicity with a static water contact angle of 154.0 degrees and contact angle hysteresis of 8.3 degrees. Bacterial studies revealed the bactericidal property of the surface against both gram negative (Escherichia coli) and gram positive (Staphylococcus aureus) strains through mechanical rupture of the cells by the sharp nanopillars. The cell viability on these na...
Superhydrophobic surfaces without low surface-energy (hydrophobic) modification such as silanization...
The search for alternatives to the standard methods of preventing bacterial adhesion and biofilm for...
A method based on nanosecond laser treatment was used to design superhydrophobic and superhydrophili...
We present a nanostructured ``super surface'' fabricated using a simple recipe based on deep reactiv...
We present a nanostructured "super surface" fabricated using a simple recipe based on deep reactive ...
Insects and plants exhibit bactericidal behavior through nanostructures, which leads to physical con...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 17, supp. 1 (2013)Super...
The mechano-bactericidal action of nanostructured surfaces is well-documented; however, synthetic na...
Nature has created an array of superhydrophobic surfaces that possess water-repellent, self-cleaning...
Black silicon is a synthetic nanomaterial that contains high aspect ratio nanoprotrusions on its sur...
In this work, we report a large-area fabrication of a flexible superhydrophobic bactericidal surface...
In this work, we report a large-area fabrication of a flexible superhydrophobic bactericidal surface...
Superhydrophobic surfaces without low surface-energy (hydrophobic) modification such as silanization...
The search for alternatives to the standard methods of preventing bacterial adhesion and biofilm for...
A method based on nanosecond laser treatment was used to design superhydrophobic and superhydrophili...
We present a nanostructured ``super surface'' fabricated using a simple recipe based on deep reactiv...
We present a nanostructured "super surface" fabricated using a simple recipe based on deep reactive ...
Insects and plants exhibit bactericidal behavior through nanostructures, which leads to physical con...
Publicado em "Journal of Tissue Engineering and Regenerative Medicine", vol. 17, supp. 1 (2013)Super...
The mechano-bactericidal action of nanostructured surfaces is well-documented; however, synthetic na...
Nature has created an array of superhydrophobic surfaces that possess water-repellent, self-cleaning...
Black silicon is a synthetic nanomaterial that contains high aspect ratio nanoprotrusions on its sur...
In this work, we report a large-area fabrication of a flexible superhydrophobic bactericidal surface...
In this work, we report a large-area fabrication of a flexible superhydrophobic bactericidal surface...
Superhydrophobic surfaces without low surface-energy (hydrophobic) modification such as silanization...
The search for alternatives to the standard methods of preventing bacterial adhesion and biofilm for...
A method based on nanosecond laser treatment was used to design superhydrophobic and superhydrophili...