Nucleic acid-polymer conjugates are an attractive class of materials endowed with tunable and responsive character. Herein, we exploit the dynamic character of nucleic acids in the preparation of hybrid DNA-covalent polymers with extendable grafts by the hybridization chain reaction. Addition of DNA hairpins to an initiator DNA-dextran graft copolymer resulted in the growth of the DNA grafts as evidenced by various characterization techniques over several length scales. Additionally, aggregation of the initiator DNA-graft copolymer before the hybridization chain reaction was observed resulting in the formation of kinetically trapped aggregates several hundreds of nanometers in diameter that could be disrupted by a preheating step at 60 °C p...
Conventional grafting-to approaches to DNA-polymer conjugates are often limited by low reaction yiel...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
Conventional grafting-to approaches to DNA–polymer conjugates are often limited by low reaction yiel...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
\u3cp\u3eNucleic acid-polymer conjugates are an attractive class of materials endowed with tunable a...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
The unique self-recognition properties of oligonucleotides laid the foundation of modern DNA nanotec...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
Inspired by biological polymers, sequence-controlled synthetic polymers are highly promising materia...
Creation of biocompatible functional materials is an important task in supramolecular chemistry. In ...
The combination of synthetic polymers and DNA has provided biologists, chemists and materials scient...
Conjugation of functional entities with a specific set of optical, mechanical or biological properti...
Inspired by naturally occurring polymers (DNA, polypeptides, polysaccharides, etc.) that can self- a...
Nanostructures derived from amphiphilic DNA–polymer conjugates have emerged prominently due to their...
*S Supporting Information ABSTRACT: A new type of DNA grafted polypeptide molecular brush was synthe...
Conventional grafting-to approaches to DNA-polymer conjugates are often limited by low reaction yiel...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
Conventional grafting-to approaches to DNA–polymer conjugates are often limited by low reaction yiel...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
\u3cp\u3eNucleic acid-polymer conjugates are an attractive class of materials endowed with tunable a...
Nucleic acid–polymer conjugates are an attractive class of materials endowed with tunable and respon...
The unique self-recognition properties of oligonucleotides laid the foundation of modern DNA nanotec...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
Inspired by biological polymers, sequence-controlled synthetic polymers are highly promising materia...
Creation of biocompatible functional materials is an important task in supramolecular chemistry. In ...
The combination of synthetic polymers and DNA has provided biologists, chemists and materials scient...
Conjugation of functional entities with a specific set of optical, mechanical or biological properti...
Inspired by naturally occurring polymers (DNA, polypeptides, polysaccharides, etc.) that can self- a...
Nanostructures derived from amphiphilic DNA–polymer conjugates have emerged prominently due to their...
*S Supporting Information ABSTRACT: A new type of DNA grafted polypeptide molecular brush was synthe...
Conventional grafting-to approaches to DNA-polymer conjugates are often limited by low reaction yiel...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
Conventional grafting-to approaches to DNA–polymer conjugates are often limited by low reaction yiel...