CONSPECTUS: Self-assembled functional DNA oligonucleotide based architectures represent highly promising candidates for the creation of nanoscale devices. The field of DNA nanotechnology has emerged to a high level of maturity and currently constitutes one of the most dynamic, creative, and exciting modern research areas. The transformation from structural DNA nanotechnology to functional DNA architectures is already taking place with tremendous pace. Particularly the advent of DNA origami technology has propelled DNA nanotechnology forward. DNA origami provided a versatile method for precisely aligning structural and functional DNA modules in two and three dimensions, thereby serving as a means for constructing scaffolds and chassis requir...
This thesis sets out to further the field of functional DNA nanotechnology through the design of nov...
Structural DNA Nanotechnology uses unusual DNA motifs to build target shapes and arrangements. These...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
CONSPECTUS: Self-assembled functional DNA oligonucleotide based architectures represent highly promi...
Mechanically interlocked DNA nanostructures are useful as flexible entities for operating DNA-based ...
Interlocked molecular architectures are well known in supramolecular chemistry and are widely used f...
Interlocked molecular architectures are well known in supramolecular chemistry and are widely used f...
DNA can assemble various molecules and nanomaterials in a programmed fashion and is a powerful tool ...
Over the last thirty years, DNA has proven to be a great candidate for engineering nanoscale archite...
Since the first introduction by Seeman in the early 1980s, structural DNA nanotechnology has been ra...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
DNA origami enables fabrication of precise nanostructures by programming the self-assembly of DNA. W...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
This thesis sets out to further the field of functional DNA nanotechnology through the design of nov...
Structural DNA Nanotechnology uses unusual DNA motifs to build target shapes and arrangements. These...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
CONSPECTUS: Self-assembled functional DNA oligonucleotide based architectures represent highly promi...
Mechanically interlocked DNA nanostructures are useful as flexible entities for operating DNA-based ...
Interlocked molecular architectures are well known in supramolecular chemistry and are widely used f...
Interlocked molecular architectures are well known in supramolecular chemistry and are widely used f...
DNA can assemble various molecules and nanomaterials in a programmed fashion and is a powerful tool ...
Over the last thirty years, DNA has proven to be a great candidate for engineering nanoscale archite...
Since the first introduction by Seeman in the early 1980s, structural DNA nanotechnology has been ra...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
DNA origami enables fabrication of precise nanostructures by programming the self-assembly of DNA. W...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
This thesis sets out to further the field of functional DNA nanotechnology through the design of nov...
Structural DNA Nanotechnology uses unusual DNA motifs to build target shapes and arrangements. These...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...