Polymer self-assembly and DNA nanotechnology have both proved to be powerful nanoscale techniques. To date, most attempts to merge the fields have been limited to placing linear DNA segments within a polydisperse block copolymer. Here we show that, by using hydrophobic polymers of a precisely predetermined length conjugated to DNA strands, and addressable 3D DNA prisms, we are able to effect the formation of unprecedented monodisperse quantized superstructures. The structure and properties of larger micelles-of-prisms were probed in depth, revealing their ability to participate in controlled release of their constituent nanostructures, and template light-harvesting energy transfer cascades, mediated through both the addressability of DNA an...
Self‐assembly of DNA‐containing molecules into biocompatible functional materials has attracted con...
Complex function arises in biology from the proximity and relations amongst different functional uni...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
Polymer self-assembly and DNA nanotechnology have both proved to be powerful nanoscale techniques. T...
Background: One of the goals in the field of structural DNA nanotechnology is the use of DNA to buil...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
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, ...
DNA-mediated self-assembly of colloidal particles is one of the most promising approaches for constr...
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, ...
In reported experimental studies, DNA/polymer self-assemblies are usually kinetically trapped, leadi...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Self-organization of nanocomponents was mainly focused on solid nanoparticles, quantum dots, or lipo...
DNA is a remarkable material that is both an inspiration for polymer nanotechnology and a versatile ...
Self‐assembly of DNA‐containing molecules into biocompatible functional materials has attracted con...
Complex function arises in biology from the proximity and relations amongst different functional uni...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
Polymer self-assembly and DNA nanotechnology have both proved to be powerful nanoscale techniques. T...
Background: One of the goals in the field of structural DNA nanotechnology is the use of DNA to buil...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
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, ...
DNA-mediated self-assembly of colloidal particles is one of the most promising approaches for constr...
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, ...
In reported experimental studies, DNA/polymer self-assemblies are usually kinetically trapped, leadi...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
Self-organization of nanocomponents was mainly focused on solid nanoparticles, quantum dots, or lipo...
DNA is a remarkable material that is both an inspiration for polymer nanotechnology and a versatile ...
Self‐assembly of DNA‐containing molecules into biocompatible functional materials has attracted con...
Complex function arises in biology from the proximity and relations amongst different functional uni...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...