DNA-polymer hybrids have been attracting interest as adaptable functional materials by combining the stability of polymers with DNA nanotechnology. Both research fields have in common the capacity to be precise, versatile, and tunable, a prerequisite for creating powerful tools which can be easily tailored and adapted for bio-related applications. However, the conjugation of hydrophilic DNA with hydrophobic polymers remains challenging. In recent years, polymerization-induced self-assembly (PISA) has attracted significant attention for constructing nano-objects of various morphologies owing to the one-step nature of the process, creating a beneficial method for the creation of amphiphilic DNA-polymer nanostructures. This process not only al...
DNA has gained great attention both as a biological molecule and structural building block due to it...
Bioinspired nanoarchitectures are of great interest for applications in fields such as nanomedicine,...
Copper catalyzed azide-alkyne cycloaddition (CuAAC) was employed to synthesize DNA block copolymers ...
DNA-polymer hybrids have been attracting interest as adaptable functional materials by combining the...
Nanostructures derived from amphiphilic DNA–polymer conjugates have emerged prominently due to their...
Nucleic acid-polymer conjugates are an attractive class of materials endowed with tunable and respon...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
Reversible addition–fragmentation chain transfer (RAFT) polymerisation was used to produce a range o...
Background: One of the goals in the field of structural DNA nanotechnology is the use of DNA to buil...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
To exert its role of a functional polymer, DNA relies on a molecular self-assembly process that is d...
Self‐assembly of DNA‐containing molecules into biocompatible functional materials has attracted con...
DNA has gained great attention both as a biological molecule and structural building block due to it...
Bioinspired nanoarchitectures are of great interest for applications in fields such as nanomedicine,...
Copper catalyzed azide-alkyne cycloaddition (CuAAC) was employed to synthesize DNA block copolymers ...
DNA-polymer hybrids have been attracting interest as adaptable functional materials by combining the...
Nanostructures derived from amphiphilic DNA–polymer conjugates have emerged prominently due to their...
Nucleic acid-polymer conjugates are an attractive class of materials endowed with tunable and respon...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
Reversible addition–fragmentation chain transfer (RAFT) polymerisation was used to produce a range o...
Background: One of the goals in the field of structural DNA nanotechnology is the use of DNA to buil...
Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been ...
To exert its role of a functional polymer, DNA relies on a molecular self-assembly process that is d...
Self‐assembly of DNA‐containing molecules into biocompatible functional materials has attracted con...
DNA has gained great attention both as a biological molecule and structural building block due to it...
Bioinspired nanoarchitectures are of great interest for applications in fields such as nanomedicine,...
Copper catalyzed azide-alkyne cycloaddition (CuAAC) was employed to synthesize DNA block copolymers ...