Single-chain polymeric nanoparticles (SCNPs) have been explored for applications in biomedicine such as drug delivery, catalysis, and imaging. These SCNPs are generated from the intramolecular folding or collapse of the single-chain polymer where the collapse is achieved by self-assembly or covalent crosslinking. In this thesis, the intramolecular self-assembly of single-chain polymeric systems is explored in catalysis and fluorescence. In Chapter 2, we developed an amphiphilic ruthenium-containing single-chain polymer that promotes allyl carbamate cleavage reactions in aqueous and biologically relevant conditions. This polymeric catalyst works in synergy with the enzyme β-galactosidase to perform a tandem reaction on a single substrate. A...
A strategy to improve the catalytic activity of transitional metal-based catalysis in the complex bi...
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 an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
Folding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
Folding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
Folding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
\u3cp\u3eFolding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble...
Polymeric nanoparticles have been utilized in an increasing number of fields over the past two decad...
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...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
\u3cp\u3eFolding a single polymer chain around catalytically active sites to construct catalytic sin...
A strategy to improve the catalytic activity of transitional metal-based catalysis in the complex bi...
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 an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
Folding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
Folding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
Folding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble, and sta...
\u3cp\u3eFolding an amphiphilic polymer around a transition metal affords homogeneous, water-soluble...
Polymeric nanoparticles have been utilized in an increasing number of fields over the past two decad...
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...
Folding a single polymer chain around catalytically active sites to construct catalytic single chain...
\u3cp\u3eFolding a single polymer chain around catalytically active sites to construct catalytic sin...
A strategy to improve the catalytic activity of transitional metal-based catalysis in the complex bi...
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...