The adsorption of DNA molecules on mica surface and the following desorption of DNA molecules at ethanol-mica interface were studied using atomic force microscopy. By changing DNA concentration, different morphologies on mica surface have been observed. A very uniform and orderly monolayer of DNA molecules was constructed on the mica surface with a DNA concentration of 30 ng/mu L. When the samples were immersed into ethanol for about 15 min, various desorption degree of DNA from mica (0-99%) was achieved. It was found that with the increase of DNA concentration, the desorption degree of DNA from the mica at ethanol-mica interface decreased. And when the uniform and orderly DNA monolayers were formed on the mica surface, almost no DNA molecu...
The lambda-DNA molecules self-assemble on cysteamine-modified gold (111) surface to form flat-lying ...
DNA on mica can be imaged in the atomic force microscope (AFM) in water or in some buffers If the sa...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
The availability of a number of methods to controllably adsorb DNA on solid surfaces is useful to re...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
The deposition of DNA molecules on mica is driven and controlled by the ionic densities around DNA a...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
As counterions of DNA on mica, Mg2+, Ca2+, Sr2+ and Ba2+ were used for,clarifying whether DNA molecu...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
AbstractAtomic force microscopy was used to image single-stranded DNA (ssDNA) adsorbed on mica modif...
This paper explores suitable conditions for the imaging of DNA molecules by atomic force microscope ...
AbstractWe have investigated the morphology and surface forces of protein A adsorbed on mica surface...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
In the present work, we show that oxidized silicon may be successfully used to image multivalent cat...
International audienceStudying the influence of macromolecular crowding at high ionic strengths on a...
The lambda-DNA molecules self-assemble on cysteamine-modified gold (111) surface to form flat-lying ...
DNA on mica can be imaged in the atomic force microscope (AFM) in water or in some buffers If the sa...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...
The availability of a number of methods to controllably adsorb DNA on solid surfaces is useful to re...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
The deposition of DNA molecules on mica is driven and controlled by the ionic densities around DNA a...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
As counterions of DNA on mica, Mg2+, Ca2+, Sr2+ and Ba2+ were used for,clarifying whether DNA molecu...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
AbstractAtomic force microscopy was used to image single-stranded DNA (ssDNA) adsorbed on mica modif...
This paper explores suitable conditions for the imaging of DNA molecules by atomic force microscope ...
AbstractWe have investigated the morphology and surface forces of protein A adsorbed on mica surface...
DNA is the molecule that can bear the highest possible informational content. The different codes em...
In the present work, we show that oxidized silicon may be successfully used to image multivalent cat...
International audienceStudying the influence of macromolecular crowding at high ionic strengths on a...
The lambda-DNA molecules self-assemble on cysteamine-modified gold (111) surface to form flat-lying ...
DNA on mica can be imaged in the atomic force microscope (AFM) in water or in some buffers If the sa...
The preparation of DNA-based nanostructures is usually accomplished in solution, by the controlled-t...