This study addressed the effects of treatment with gliding discharge plasma on the surface properties of solid materials, as well as the consequences concerning adherence of a model bacterium. As evaluated by contact angles with selected liquids, plasma treatment caused an increase in surface hydrophilicity and in the Lewis acid-base components of the surface energy of all materials tested. These modifications were more marked for low density polyethylene and stainless steel than for polytetrafluoroethylene. After treatment, the hydrophilicity of the materials remained relatively stable for at least 20 days. Moreover, analysis of the topography of the materials by atomic force microscopy revealed that the roughness of both polymers was redu...
Polyester is a popular class of material used in material engineering. With its 0.4% moisture regain...
The surface of high-performance poly(ethylene terephthalate) (PET) fibers is difficult to wet and im...
Low temperature plasma technology is well established in surface modification of polymer materials o...
This study addressed the effects of treatment with gliding discharge plasma on the surface propertie...
In this paper, the effects of a non-thermal plasma treatment (plasma needle) on the surface property...
Plasma processing of the surfaces of biomaterials is interesting because it enables modification of ...
In this paper, surface modification of various materials exposed to a nonthermal atm. plasma is inve...
International audienceThe plasma state consists of a mixture of charged and neutral particles includ...
Advanced biomaterials should also be bioactive with regard to desirable cellular responses, such as ...
AbstractAdhesion is the first step in biofilm formation, a bacterial lifestyle characterized by anti...
Pure poly(lactide-co-glycolide) and polystyrene surfaces are not very suitable to support cell adhes...
In this work it was investigated the effect of the exposure to different plasmas on the wettability ...
strength The effects of plasma treatment by at-mospheric low temperature pulse dis-charge and microw...
A characterisation of a low pressure SF6 discharge was undertaken, by means of plasma diagnostics, i...
Despite many synthetic biomaterials having physical properties that are comparable or even superior ...
Polyester is a popular class of material used in material engineering. With its 0.4% moisture regain...
The surface of high-performance poly(ethylene terephthalate) (PET) fibers is difficult to wet and im...
Low temperature plasma technology is well established in surface modification of polymer materials o...
This study addressed the effects of treatment with gliding discharge plasma on the surface propertie...
In this paper, the effects of a non-thermal plasma treatment (plasma needle) on the surface property...
Plasma processing of the surfaces of biomaterials is interesting because it enables modification of ...
In this paper, surface modification of various materials exposed to a nonthermal atm. plasma is inve...
International audienceThe plasma state consists of a mixture of charged and neutral particles includ...
Advanced biomaterials should also be bioactive with regard to desirable cellular responses, such as ...
AbstractAdhesion is the first step in biofilm formation, a bacterial lifestyle characterized by anti...
Pure poly(lactide-co-glycolide) and polystyrene surfaces are not very suitable to support cell adhes...
In this work it was investigated the effect of the exposure to different plasmas on the wettability ...
strength The effects of plasma treatment by at-mospheric low temperature pulse dis-charge and microw...
A characterisation of a low pressure SF6 discharge was undertaken, by means of plasma diagnostics, i...
Despite many synthetic biomaterials having physical properties that are comparable or even superior ...
Polyester is a popular class of material used in material engineering. With its 0.4% moisture regain...
The surface of high-performance poly(ethylene terephthalate) (PET) fibers is difficult to wet and im...
Low temperature plasma technology is well established in surface modification of polymer materials o...