The fate of an individual DNA molecule when it is deposited on a hard inorganic surface in a “dry” environment is unknown, while it is a crucial determinant for nanotechnology applications of nucleic acids. In the absence of experimental approaches that are able to unravel the three-dimensional atomic structure of the target system, here we tackle the first step toward a computational solution of the problem. By using first-principles quantum mechanical calculations of the four nucleobases on the Au(111) surface, we present results for the geometries, energetics, and electronic structure, in view of developing a force field that will enable classical simulations of DNA on Au(111) to investigate the structural modifications of the duplex in ...
Addressing the effect of different environmental factors on the adsorption of DNA to solid supports ...
The interaction between metal atoms and nucleobases has been a topic of high interest due to the wid...
We investigate, by means of first-principles calculations, the impact of a gold surface on the proto...
The fate of an individual DNA molecule when it is deposited on a hard inorganic surface in a “dry” e...
The fate of an individual DNA molecule when it is deposited on a hard inorganic surface in a “dry” e...
Biochip technology is based on the immobilization of biological macromolecules on the surface of ele...
The internal electronic structure of single deoxyribonucleic acid (DNA) base molecules (i.e., guanin...
To understand of the mechanism of self-assembly of DNA base molecules on the Au(111) surface, molecu...
We simulate the structure and dynamics of the four DNA bases on the most stable gold surface. The ex...
We simulate the structure and dynamics of the four DNA bases on the most stable gold surface. The ex...
The solution environment is of fundamental importance in the adsorption of molecules on surfaces, a ...
Among the low-index single-crystal gold surfaces, the Au(110) surface is the most active toward mole...
Two molecular phases of the DNA base adenine (A) on a Au(111) surface are observed by using STM unde...
none2We simulate the structure and dynamics of the four DNA bases on the most stable gold surface. T...
We have performed a periodic density functional theory study, including a correction for the dispers...
Addressing the effect of different environmental factors on the adsorption of DNA to solid supports ...
The interaction between metal atoms and nucleobases has been a topic of high interest due to the wid...
We investigate, by means of first-principles calculations, the impact of a gold surface on the proto...
The fate of an individual DNA molecule when it is deposited on a hard inorganic surface in a “dry” e...
The fate of an individual DNA molecule when it is deposited on a hard inorganic surface in a “dry” e...
Biochip technology is based on the immobilization of biological macromolecules on the surface of ele...
The internal electronic structure of single deoxyribonucleic acid (DNA) base molecules (i.e., guanin...
To understand of the mechanism of self-assembly of DNA base molecules on the Au(111) surface, molecu...
We simulate the structure and dynamics of the four DNA bases on the most stable gold surface. The ex...
We simulate the structure and dynamics of the four DNA bases on the most stable gold surface. The ex...
The solution environment is of fundamental importance in the adsorption of molecules on surfaces, a ...
Among the low-index single-crystal gold surfaces, the Au(110) surface is the most active toward mole...
Two molecular phases of the DNA base adenine (A) on a Au(111) surface are observed by using STM unde...
none2We simulate the structure and dynamics of the four DNA bases on the most stable gold surface. T...
We have performed a periodic density functional theory study, including a correction for the dispers...
Addressing the effect of different environmental factors on the adsorption of DNA to solid supports ...
The interaction between metal atoms and nucleobases has been a topic of high interest due to the wid...
We investigate, by means of first-principles calculations, the impact of a gold surface on the proto...