Folding a polymer chain into a well-defined single-chain polymeric nanoparticle (SCPN) is a fascinating approach to obtaining structured and functional nanoparticles. Like all polymeric materials, SCPNs are heterogeneous in their nature due to the polydispersity of their synthesis: the stochastic synthesis of polymer backbone length and stochastic functionalization with hydrophobic and hydrophilic pendant groups make structural diversity inevitable. Therefore, in a single batch of SCPNs, nanoparticles with different physicochemical properties are present, posing a great challenge to their characterization at a single-particle level. The development of techniques that can elucidate differences between SCPNs at a single-particle level is impe...
Fluorescent and catalytically active single chain nanoparticle (SCNP) systems allow for the visualiz...
As a relatively new class of materials, single-chain polymer nanoparticles (SCNPs) just entered the ...
We report a facile approach to form ultra-fine single-chain polymer nanoparticles (SCPNs) via disulf...
Folding a polymer chain into a well-defined single-chain polymeric nanoparticle (SCPN) is a fascinat...
The controlled folding of synthetic polymer chains into single-chain polymeric nanoparticles (SCPNs)...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
We report the facile ambient temperature generation of size tunable and well-defined (pro)fluorescen...
Single-chain polymeric nanoparticles (SCNPs) have been explored for applications in biomedicine such...
Understanding polarity gradients inside nanomaterials is essential to capture their potential as nan...
263 pagesPolymer systems and nanocomposites thereof encompass an enormous array of materials with ap...
Fluorescent and catalytically active single chain nanoparticle (SCNP) systems allow for the visualiz...
As a relatively new class of materials, single-chain polymer nanoparticles (SCNPs) just entered the ...
We report a facile approach to form ultra-fine single-chain polymer nanoparticles (SCPNs) via disulf...
Folding a polymer chain into a well-defined single-chain polymeric nanoparticle (SCPN) is a fascinat...
The controlled folding of synthetic polymer chains into single-chain polymeric nanoparticles (SCPNs)...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
We report the facile ambient temperature generation of size tunable and well-defined (pro)fluorescen...
Single-chain polymeric nanoparticles (SCNPs) have been explored for applications in biomedicine such...
Understanding polarity gradients inside nanomaterials is essential to capture their potential as nan...
263 pagesPolymer systems and nanocomposites thereof encompass an enormous array of materials with ap...
Fluorescent and catalytically active single chain nanoparticle (SCNP) systems allow for the visualiz...
As a relatively new class of materials, single-chain polymer nanoparticles (SCNPs) just entered the ...
We report a facile approach to form ultra-fine single-chain polymer nanoparticles (SCPNs) via disulf...