Bisphosphonates form self-assembled monolayers (SAMs) spontaneously on stainless steel, silicon, and titanium oxidized surfaces. We used contact angle measurements, atomic force microscopy, and X-ray reflectivity analysis to study the formation of SAMs on a model surface of ultraflat titanium (rms=0.2 nm). The results were extended to standard materials (mechanically polished titanium, stainless steel, and silicon) and showed that water-soluble bisphosphonic perfluoropolyether can easily form SAMs, with 100% surface coverage and a layer thickness of less than 3 nm. Hydrophobic (water contact angle >110° on stainless steel or titanium) and lipophobic (methylene iodide contact angle >105° on titanium) properties are discussed in terms o...
Self assembled monolayer (SAMs) have attracted significant attention due to their potential to form ...
Nanostructured materials play a vital role in almost all aspects of science and technology in the 21...
For several years, UTINAM and FEMTO-ST laboratories studied tribological properties of self-assemble...
Octadecylphosphonic acid (ODPA) self-assembled monolayers (SAMs) have demonstrated potential for det...
Surface modification of stainless steel (SS316L) to improve surface properties or durability is an i...
Self-assembled monolayers (SAMs) that contain fluorophore units are nowadays widely used to tune sur...
Titanium metal is a commonly used implant material which can be colonized by bacteria. Biofilms are ...
This study compared the tribological properties in nano- and millinewton load ranges of Ti-6Al-4V s...
Self assembled monolayers (SAM) formed by fluoro-phosphonic and undecenyl-phosphonic acids on carbon...
The formation of methyl-terminated carboxylic acid self-assembled monolayers (SAMs) with even number...
Surface modification of an implant with a biomolecule is used to improve its biocompatibility and to...
The preparation of self assembled molecular(SAM) layers needs molecules with a small hydrophilic and...
The effects of surface topography and chemistry on human gingival fibroblasts behavior were studied ...
In this study, X-ray photoelectron spectroscopy (XPS) has been used to study thin organic films. For...
AbstractThe field of self-assembled monolayers (SAMs) of organic compounds on different substrates i...
Self assembled monolayer (SAMs) have attracted significant attention due to their potential to form ...
Nanostructured materials play a vital role in almost all aspects of science and technology in the 21...
For several years, UTINAM and FEMTO-ST laboratories studied tribological properties of self-assemble...
Octadecylphosphonic acid (ODPA) self-assembled monolayers (SAMs) have demonstrated potential for det...
Surface modification of stainless steel (SS316L) to improve surface properties or durability is an i...
Self-assembled monolayers (SAMs) that contain fluorophore units are nowadays widely used to tune sur...
Titanium metal is a commonly used implant material which can be colonized by bacteria. Biofilms are ...
This study compared the tribological properties in nano- and millinewton load ranges of Ti-6Al-4V s...
Self assembled monolayers (SAM) formed by fluoro-phosphonic and undecenyl-phosphonic acids on carbon...
The formation of methyl-terminated carboxylic acid self-assembled monolayers (SAMs) with even number...
Surface modification of an implant with a biomolecule is used to improve its biocompatibility and to...
The preparation of self assembled molecular(SAM) layers needs molecules with a small hydrophilic and...
The effects of surface topography and chemistry on human gingival fibroblasts behavior were studied ...
In this study, X-ray photoelectron spectroscopy (XPS) has been used to study thin organic films. For...
AbstractThe field of self-assembled monolayers (SAMs) of organic compounds on different substrates i...
Self assembled monolayer (SAMs) have attracted significant attention due to their potential to form ...
Nanostructured materials play a vital role in almost all aspects of science and technology in the 21...
For several years, UTINAM and FEMTO-ST laboratories studied tribological properties of self-assemble...