International audienceHydrogenated nanocrystalline silicon, while being non-charged and non-polar, could be an ideal candidate for the non-covalent and orientation-controlled immobilization of biomolecules thanks to local electric fields around nanocrystals. To that effect, the adsorption of bovine serum albumin on substrates with different densities of nanocrystals, revealed by Raman spectroscopy and X-ray diffraction, was studied using infrared spectroscopy and atomic force microscopy. It was found that the protein-surface interactions followed different mechanisms depending on the nanostructure at the surface: hydrophobic on the non-crystalline part of the surface and electrostatic around the crystalline part. These electrostatic interac...
We evaluate here, using synchrotron X-ray reflectivity, hemoglobin adsorption characteristics on sil...
Surface immobilized biomolecular probes are used in many areas of biomedical research, such as genom...
Recent technological advances have allowed the development of a new generation of nanostructured mat...
International audienceHydrogenated nanocrystalline silicon, while being non-charged and non-polar, c...
The adsorption behavior of hard and soft proteins under the effect of an external electric field was...
The adsorption behavior of hard and soft proteins under the effect of an external electric field was...
Nanostructures of sizes comparable to protein dimensions are created on Si and Ti surfaces by local ...
Protein adsorption at charged surfaces is a common process in the development of functional technolo...
The adsorption process of proteins to surfaces is governed by the mutual interactions among proteins...
Protein adsorption is the triggering event for a variety of complex phenomena occurring at the nanos...
The protein adsorption of two human plasma proteins - albumin (Alb) and fibronectin (Fn) - onto synt...
Every biosensor, bioengineered scaffold or biomedical implant depends crucially on an ability to con...
We present a novel approach for determining the strength of the electric field experienced by protei...
Resistance of biomolecules to high electric fields is a main concern for nanobioelectronics/nanobios...
The photo electrochemical preparation of nanostructures on single crystalline Si surfaces is descr...
We evaluate here, using synchrotron X-ray reflectivity, hemoglobin adsorption characteristics on sil...
Surface immobilized biomolecular probes are used in many areas of biomedical research, such as genom...
Recent technological advances have allowed the development of a new generation of nanostructured mat...
International audienceHydrogenated nanocrystalline silicon, while being non-charged and non-polar, c...
The adsorption behavior of hard and soft proteins under the effect of an external electric field was...
The adsorption behavior of hard and soft proteins under the effect of an external electric field was...
Nanostructures of sizes comparable to protein dimensions are created on Si and Ti surfaces by local ...
Protein adsorption at charged surfaces is a common process in the development of functional technolo...
The adsorption process of proteins to surfaces is governed by the mutual interactions among proteins...
Protein adsorption is the triggering event for a variety of complex phenomena occurring at the nanos...
The protein adsorption of two human plasma proteins - albumin (Alb) and fibronectin (Fn) - onto synt...
Every biosensor, bioengineered scaffold or biomedical implant depends crucially on an ability to con...
We present a novel approach for determining the strength of the electric field experienced by protei...
Resistance of biomolecules to high electric fields is a main concern for nanobioelectronics/nanobios...
The photo electrochemical preparation of nanostructures on single crystalline Si surfaces is descr...
We evaluate here, using synchrotron X-ray reflectivity, hemoglobin adsorption characteristics on sil...
Surface immobilized biomolecular probes are used in many areas of biomedical research, such as genom...
Recent technological advances have allowed the development of a new generation of nanostructured mat...