DNA origami nanostructures allow for the arrangement of different functionalities such as proteins, specific DNA structures, nanoparticles, and various chemical modifications with unprecedented precision. The arranged functional entities can be visualized by atomic force microscopy (AFM) which enables the study of molecular processes at a single-molecular level. Examples comprise the investigation of chemical reactions, electron-induced bond breaking, enzymatic binding and cleavage events, and conformational transitions in DNA. In this paper, we provide an overview of the advances achieved in the field of single-molecule investigations by applying atomic force microscopy to functionalized DNA origami substrates
The DNA origami technology holds great promise for the assembly of nanoscopic technological devices ...
DNA nanotechnology and advances in the DNA origami technique have enabled facile design and synthesi...
The combination of molecular self-assembly based on the DNA origami technique with lithographic patt...
DNA origami nanostructures allow for the arrangement of different functionalities such as proteins, ...
Light-induced oxidative damage of DNA by 1O2 generated from photoexcited C60 was observed at the sin...
The flexible and precise immobilization of self-organizing DNA nanostructures represents a key step ...
Deoxyribonucleic acid (DNA), the structural basis of genetics, plays a crucial role in the life of c...
Low-energy electrons (LEEs) play an important role in nanolithography, atmospheric chemistry, and DN...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
Single-molecule pH sensors have been developed by utilizing molecular imaging of pH-responsive shape...
Although there is a long history of the study of the interaction of DNA with carbon surfaces, limite...
DNA origami is a method for constructing 2-dimensional nanostructures with arbitrary shapes, by fold...
Deoxyribonucleic acid (DNA) origami [1] is expected to be a nanoscale functional block for Nano El...
To bring real-world applications of DNA nanostructures to fruition, advanced microscopy techniques a...
Anselmetti D, Fritz J, Smith B, Fernandez-Busquets X. Single molecule DNA biophysics with atomic for...
The DNA origami technology holds great promise for the assembly of nanoscopic technological devices ...
DNA nanotechnology and advances in the DNA origami technique have enabled facile design and synthesi...
The combination of molecular self-assembly based on the DNA origami technique with lithographic patt...
DNA origami nanostructures allow for the arrangement of different functionalities such as proteins, ...
Light-induced oxidative damage of DNA by 1O2 generated from photoexcited C60 was observed at the sin...
The flexible and precise immobilization of self-organizing DNA nanostructures represents a key step ...
Deoxyribonucleic acid (DNA), the structural basis of genetics, plays a crucial role in the life of c...
Low-energy electrons (LEEs) play an important role in nanolithography, atmospheric chemistry, and DN...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
Single-molecule pH sensors have been developed by utilizing molecular imaging of pH-responsive shape...
Although there is a long history of the study of the interaction of DNA with carbon surfaces, limite...
DNA origami is a method for constructing 2-dimensional nanostructures with arbitrary shapes, by fold...
Deoxyribonucleic acid (DNA) origami [1] is expected to be a nanoscale functional block for Nano El...
To bring real-world applications of DNA nanostructures to fruition, advanced microscopy techniques a...
Anselmetti D, Fritz J, Smith B, Fernandez-Busquets X. Single molecule DNA biophysics with atomic for...
The DNA origami technology holds great promise for the assembly of nanoscopic technological devices ...
DNA nanotechnology and advances in the DNA origami technique have enabled facile design and synthesi...
The combination of molecular self-assembly based on the DNA origami technique with lithographic patt...