We pioneer the photochemical generation of single chain nanoparticles (SCNPs) at the to-date mildest reported wavelength of 625 nm by exploiting the photochemical uncaging of methylene blue protected amines. The protected amines are tethered to polymers prepared via reversible addition-fragmentation chain transfer (RAFT) polymerisation, and subsequently undergo intrachain crosslinking by amide formation.</p
While polymer synthesis proceeds predominantly towards the thermodynamic minimum, living systems ope...
We report a new strategy for the rapid, efficient synthesis of single-chain polymer nanoparticles (S...
We introduce a novel synthetic strategy in which high molecular weight comb copolymers with aliphati...
Emulating nature’s protein paradigm, single-chain nanoparticles (SCNP) are an emerging class of nano...
Emulating nature’s protein paradigm, single-chain nanoparticles (SCNP) are an emerging class of nano...
We introduce a mild and efficient avenue to induce the folding of single chain polymer nanoparticles...
One of the most powerful capabilities of nature is specific catalysis of chemical reactions by enzym...
Emulating nature’s protein paradigm, single-chain nanoparticles (SCNP) are an emerging class of nano...
Photochemistry allows chemists to exert control over chemical reactions with spatiotemporal precisio...
Photochemistry allows chemists to exert control over chemical reactions with spatiotemporal precisio...
Single chain polymer nanoparticles (SCNP) are an attractive polymer architecture that provides funct...
Clean use of photons from light to activate chemical reactions offers many possibilities in differen...
We introduce a single-chain nanoparticle (SCNP) system, whose internal structure can be dynamically ...
This is an open access article distributed under the Creative Commons Attribution License.Single-cha...
Single-chain technology (SCT) allows the transformation of individual polymer chains to folded/colla...
While polymer synthesis proceeds predominantly towards the thermodynamic minimum, living systems ope...
We report a new strategy for the rapid, efficient synthesis of single-chain polymer nanoparticles (S...
We introduce a novel synthetic strategy in which high molecular weight comb copolymers with aliphati...
Emulating nature’s protein paradigm, single-chain nanoparticles (SCNP) are an emerging class of nano...
Emulating nature’s protein paradigm, single-chain nanoparticles (SCNP) are an emerging class of nano...
We introduce a mild and efficient avenue to induce the folding of single chain polymer nanoparticles...
One of the most powerful capabilities of nature is specific catalysis of chemical reactions by enzym...
Emulating nature’s protein paradigm, single-chain nanoparticles (SCNP) are an emerging class of nano...
Photochemistry allows chemists to exert control over chemical reactions with spatiotemporal precisio...
Photochemistry allows chemists to exert control over chemical reactions with spatiotemporal precisio...
Single chain polymer nanoparticles (SCNP) are an attractive polymer architecture that provides funct...
Clean use of photons from light to activate chemical reactions offers many possibilities in differen...
We introduce a single-chain nanoparticle (SCNP) system, whose internal structure can be dynamically ...
This is an open access article distributed under the Creative Commons Attribution License.Single-cha...
Single-chain technology (SCT) allows the transformation of individual polymer chains to folded/colla...
While polymer synthesis proceeds predominantly towards the thermodynamic minimum, living systems ope...
We report a new strategy for the rapid, efficient synthesis of single-chain polymer nanoparticles (S...
We introduce a novel synthetic strategy in which high molecular weight comb copolymers with aliphati...