Here, we introduce a 3D-DNA construction method that assembles a minimum number of DNA strands in quantitative yield, to give a scaffold with a large number of single-stranded arms. This DNA frame is used as a core structure to organize other functional materials in 3D as the shell. We use the ring-opening metathesis polymerization (ROMP) to generate block copolymers that are covalently attached to DNA strands. Site-specific hybridization of these DNA-polymer chains on the single-stranded arms of the 3D-DNA scaffold gives efficient access to DNA-block copolymer cages. These biohybrid cages possess polymer chains that are programmably positioned in three dimensions on a DNA core and display increased nuclease resistance as compared to unfunc...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
Single stranded (ss) DNA block copolymers were applied to synthesize DNA multiblock architectures by...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
Triblock copolymer brushes were created using ring opening metathesis polymerization, ROMP. Norborne...
The predictability of DNA self-assembly is exploited in many nanotechnological approaches. Inspired ...
PCR was successfully implemented into polymer chemistry to produce linear multiblock structures up t...
PCR was successfully implemented into polymer chemistry to produce linear multiblock structures up t...
The distinct base pairing property of DNA is an advantageous phenomenon that has been exploited in t...
In bionanotechnology, DNA has been shown as a superb molecular system in self-assembly towards botto...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
The field of structural DNA nanotechnology utilizes DNA's powerful base-pairing molecular recognitio...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
Single stranded (ss) DNA block copolymers were applied to synthesize DNA multiblock architectures by...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
Three-dimensional (3D) cages are one of the most important targets for nanotechnology. Both proteins...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
Triblock copolymer brushes were created using ring opening metathesis polymerization, ROMP. Norborne...
The predictability of DNA self-assembly is exploited in many nanotechnological approaches. Inspired ...
PCR was successfully implemented into polymer chemistry to produce linear multiblock structures up t...
PCR was successfully implemented into polymer chemistry to produce linear multiblock structures up t...
The distinct base pairing property of DNA is an advantageous phenomenon that has been exploited in t...
In bionanotechnology, DNA has been shown as a superb molecular system in self-assembly towards botto...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
The field of structural DNA nanotechnology utilizes DNA's powerful base-pairing molecular recognitio...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
DNA has been utilized to engineer the novel functionalized and networked nanostructures in this diss...
Single stranded (ss) DNA block copolymers were applied to synthesize DNA multiblock architectures by...