Hydrophobicity of silver surfaces with microparticle geometry
•Electrochemical deposition of silver microparticles.•Effect of deposition conditions on particles geometry.•Silver microparticle geometry surfaces showed different hydrophobicity dependent on current pulse numbers.•Microparticle geometry affected surface hydrophobocity with contact angle up to 118°...
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Veröffentlicht in: | Applied surface science 2016-11, Vol.387, p.1195-1201 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •Electrochemical deposition of silver microparticles.•Effect of deposition conditions on particles geometry.•Silver microparticle geometry surfaces showed different hydrophobicity dependent on current pulse numbers.•Microparticle geometry affected surface hydrophobocity with contact angle up to 118°.•Prediction of particle adhesion by calculated partial surface tension components.
The effect of the duration of the current deposition cycle and the number of current pulses on the geometry of silver microstructured surfaces and on the free surface energy, polarizability, hydrophobicity and thus adhesion force of the silver surfaces has been investigated. The changes in surface hydrophobicity were entirely dependent on the size and density of the microparticles on the surface. The results showed that formation of the silver microparticles was related to number of current pulses, while the duration of one current pulse played only a minor effect on the final surface microparticle geometry and thus on the surface tension and hydrophobicity. The conventional geometry of the silver particles has been transformed to the fractal dimension D. The surface hydrophobicity depended predominantly on the length of the dendrites not on their width. The highest silver surface hydrophobicity was observed on a surface prepared by 30 current pulses with a pulse duration of 1s, the lowest one when deposition was performed by 10 current pulses with a duration of 0.1s. The partial surface tension coefficients γDS and polarizability kS of the silver surfaces were calculated. Both parameters can be applied in future applications in living cells adhesion prediction and spectral method selection. Silver films with microparticle geometry showed a lower variability in final surface hydrophobicity when compared to nanostructured surfaces. The comparisons could be used to modify surfaces and to modulate human cells and bacterial adhesion on body implants, surgery instruments and clean surfaces. |
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ISSN: | 0169-4332 1873-5584 |
DOI: | 10.1016/j.apsusc.2016.07.054 |