0000000001168829

AUTHOR

Adrian H. A. Lutey

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Towards Laser-Textured Antibacterial Surfaces

2018

AbstractEscherichia coli and Staphylococcus aureus bacterial retention on mirror-polished and ultrashort pulse laser-textured surfaces is quantified with a new approach based on ISO standards for measurement of antibacterial performance. It is shown that both wettability and surface morphology influence antibacterial behavior, with neither superhydrophobicity nor low surface roughness alone sufficient for reducing initial retention of either tested cell type. Surface structures comprising spikes, laser-induced periodic surface structures (LIPSS) and nano-pillars are produced with 1030 nm wavelength 350 fs laser pulses of energy 19.1 μJ, 1.01 μJ and 1.46 μJ, respectively. SEM analysis, optic…

Staphylococcus aureusNanostructureMaterials scienceShear forcelcsh:Medicine02 engineering and technology010402 general chemistry01 natural sciencesArticleBacterial AdhesionContact angleMicroscopyEscherichia coliSurface roughnessLotus effectComposite materiallcsh:ScienceAsepsisMultidisciplinaryLaserslcsh:R021001 nanoscience & nanotechnology0104 chemical sciencesSteelWettabilitylcsh:QWetting0210 nano-technologyUltrashort pulseScientific Reports
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