The inherent self-assembly properties of DNA make it ideal in nanotechnology. We present a fully addressable DNA nanostructure with the smallest possible unit cell, a hexagon with a side-length of only 3.4 nm.2,3 Using novel three-way oligonucleotides, where each side has a unique double-stranded DNA sequence that can be assigned a specific address, we will build a non-repetitive two-dimensional grid
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
This thesis features results from two different studies on a fully addressable non-repetitive networ...
Here, we present the formation of a fully addressable DNA nanostructure that shows the potential to ...
We present a strategy for self-assembly of the smallest yet reported DNA nanostructures that are als...
The use of nucleic acids as a nanomaterial is becoming increasingly widespread due to the suitabilit...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Complex function arises in biology from the proximity and relations amongst different functional uni...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
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, ...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
The self-assembly of oligodeoxynucleotides is a versatile and powerful tool for the construction of ...
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
This thesis features results from two different studies on a fully addressable non-repetitive networ...
Here, we present the formation of a fully addressable DNA nanostructure that shows the potential to ...
We present a strategy for self-assembly of the smallest yet reported DNA nanostructures that are als...
The use of nucleic acids as a nanomaterial is becoming increasingly widespread due to the suitabilit...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Complex function arises in biology from the proximity and relations amongst different functional uni...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
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, ...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
The self-assembly of oligodeoxynucleotides is a versatile and powerful tool for the construction of ...
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
This thesis features results from two different studies on a fully addressable non-repetitive networ...
Here, we present the formation of a fully addressable DNA nanostructure that shows the potential to ...