This study is designed to investigate the ability of plasma polymer films (PPHMDS), grown from the hexamethyldisiloxane (HMDS) monomer on stainless steel (SS) and silica glass (SG) substrates, to induce the deposition of composite layers from a mixture of saturated simulated body fluid (SBF) and detonation nanodiamond (DND) by a biomimetic process. Results from FTIR and XPS studies showed that the structure of the PPHDMS layers depends on the nature of the substrate, as well as on the deposition conditions and the influence of the subsequent deposition of the composite layers. The PPHDMS structure appears to be covalently bonded to SG, compared to those on SS. After their immersion in the mixture of SBF and DND, the layers grown on th...
This study aims to obtain mechanistic understanding of the formation and development of biomedical C...
Herein, we present a simple method for fabricating plasma polymerized hexamethyldisiloxane films (pp...
This comprehensive review begins by tracing the historical development and progress of cold plasma t...
Title: Thin films of plasma polymers as stable supports for biomedical applications Author: Ivan Gor...
In the present study we demonstrated that composite PPHMDS/DND coatings with elastic moduli close to...
Plasma enhanced chemical vapor deposition is a promising process for the generation of tailor-made p...
Title: Structuring of plasma polymers: new methods for fabrication of nano-architectured thin films ...
Application of bio-functionalized coatings on bone implantable devices is a promising approach to di...
Title: Plasma polymers in the nanostructured and nanocomposite coatings Author: Artem Shelemin Depar...
Plasma polymers are unconventional organic thin films which only partially share the properties trad...
For the modification of the surface energy of polymers, organosilicon coatings provide good optical ...
Polymeric materials can be used in many application areas due to their mechanical (e.g. elastic) cha...
Title: XPS analysis of plasma polymers and nanocomposite films without breaking vacuum Author: Anna ...
In a trend for sustainable engineering and functionalization of surfaces, we explore the possibiliti...
The ability of non-equilibrium plasmas to modify surfaces has been known for many years. And a promi...
This study aims to obtain mechanistic understanding of the formation and development of biomedical C...
Herein, we present a simple method for fabricating plasma polymerized hexamethyldisiloxane films (pp...
This comprehensive review begins by tracing the historical development and progress of cold plasma t...
Title: Thin films of plasma polymers as stable supports for biomedical applications Author: Ivan Gor...
In the present study we demonstrated that composite PPHMDS/DND coatings with elastic moduli close to...
Plasma enhanced chemical vapor deposition is a promising process for the generation of tailor-made p...
Title: Structuring of plasma polymers: new methods for fabrication of nano-architectured thin films ...
Application of bio-functionalized coatings on bone implantable devices is a promising approach to di...
Title: Plasma polymers in the nanostructured and nanocomposite coatings Author: Artem Shelemin Depar...
Plasma polymers are unconventional organic thin films which only partially share the properties trad...
For the modification of the surface energy of polymers, organosilicon coatings provide good optical ...
Polymeric materials can be used in many application areas due to their mechanical (e.g. elastic) cha...
Title: XPS analysis of plasma polymers and nanocomposite films without breaking vacuum Author: Anna ...
In a trend for sustainable engineering and functionalization of surfaces, we explore the possibiliti...
The ability of non-equilibrium plasmas to modify surfaces has been known for many years. And a promi...
This study aims to obtain mechanistic understanding of the formation and development of biomedical C...
Herein, we present a simple method for fabricating plasma polymerized hexamethyldisiloxane films (pp...
This comprehensive review begins by tracing the historical development and progress of cold plasma t...