International audienceDNA immobilization on surfaces is crucial to a number of applications. However, detailed understanding of DNA/surface chemistry remains poorly documented, especially on oxide surfaces, due to the complexity of such large molecules. This work focuses on a simpler molecule, 2-deoxythymidine-5-monophosphate (dTMP), which contains all the chemical elements of DNA. It confirms that adsorption of dTMP onto OH-terminated SiO2 surfaces does not result in a chemical bond (dTMP readily washes off) and instead shows that dTMP chemically adsorbs on Al2O3 surfaces. We combine first-principles calculations, X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared (FTIR) spectroscopy to determine the bonding configuratio...
Understanding the adsorption properties of DNA bases on metal surfaces is fundamental for the ration...
We investigate the DNA–silica binding mechanism using molecular dynamics simulations. This system is...
The ability to control the binding of biological and organic molecules to a crystal surface is centr...
International audienceDNA immobilization on surfaces is crucial to a number of applications. However...
International audienceThe interactions between nucleic acids and mineral surfaces have been the focu...
International audienceDNA-directed assembly of nano-objects as a means to manufacture advanced nanom...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
Immobilization of biomolecular probes to the sensing substrate is a critical step for biosensor fabr...
ABSTRACT: The molecular recognition properties of DNA gave rise to many novel materials and applicat...
The main interface and interconnection materials normally used in complementary metal-oxide semicond...
International audienceMineral surfaces are known to adsorb organic molecules such as nucleic acids [...
We demonstrate area-selective atomic layer deposition (ALD) of oxides on DNA nanostructures. Area-se...
The internal electronic structure of single deoxyribonucleic acid (DNA) base molecules (i.e., guanin...
The fate of biomolecules in the environment depends in part on understanding the surface chemistry o...
Efforts to immobilize DNA molecules directly onto the metal surface have been carried out by many re...
Understanding the adsorption properties of DNA bases on metal surfaces is fundamental for the ration...
We investigate the DNA–silica binding mechanism using molecular dynamics simulations. This system is...
The ability to control the binding of biological and organic molecules to a crystal surface is centr...
International audienceDNA immobilization on surfaces is crucial to a number of applications. However...
International audienceThe interactions between nucleic acids and mineral surfaces have been the focu...
International audienceDNA-directed assembly of nano-objects as a means to manufacture advanced nanom...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
Immobilization of biomolecular probes to the sensing substrate is a critical step for biosensor fabr...
ABSTRACT: The molecular recognition properties of DNA gave rise to many novel materials and applicat...
The main interface and interconnection materials normally used in complementary metal-oxide semicond...
International audienceMineral surfaces are known to adsorb organic molecules such as nucleic acids [...
We demonstrate area-selective atomic layer deposition (ALD) of oxides on DNA nanostructures. Area-se...
The internal electronic structure of single deoxyribonucleic acid (DNA) base molecules (i.e., guanin...
The fate of biomolecules in the environment depends in part on understanding the surface chemistry o...
Efforts to immobilize DNA molecules directly onto the metal surface have been carried out by many re...
Understanding the adsorption properties of DNA bases on metal surfaces is fundamental for the ration...
We investigate the DNA–silica binding mechanism using molecular dynamics simulations. This system is...
The ability to control the binding of biological and organic molecules to a crystal surface is centr...