A new synthesis of hyperbranched polymers through proton transfer polymerization of thiol and epoxide groups is presented. For this, an AB<sub>2</sub> monomer bearing two epoxides and a thiol groups is synthesized. Base-catalyzed proton transfer polymerization of this monomer led to the formation of a polythioether-based hyperbranched polymer with a 65–69% degree of branching and carrying about 2% of disulfide-based structural defects. This polymer contained two reactive sites, a hydroxyl group and an epoxide unit, distributed throughout the branched scaffold. The epoxide groups could be employed in anchoring an alkyl, aryl, or ethylene oxide chain through a thiol–epoxy reaction, while the hydroxyl groups produced during the polymerization ...
Well-defined polymer scaffolds convertible to (multi)functional polymer structures via selective and...
This contribution reports on the preparation of hyperbranched polymers via thiol–yne photopolymeriza...
Here, we report the synthesis of new thermoresponsive hyperbranched polymers (HBPs) via one-pot reve...
A straightforward synthetic approach to the preparation of disulfide linked hyperbranched polymers w...
This contribution reports on the preparation of functional hyperbranched polystyrene-based materials...
Self-condensation of AB(2) type monomers (containing one A-type and two B-type functional groups) ge...
Nucleophile-initiated thiol-Michael chemistry was employed to prepare a series of mono- and di-funct...
Here, we report the synthesis of new thermoresponsive hyperbranched polymers (HBPs) via one-pot reve...
A conceptual proof for the double modification (aminolysis and subsequent thiol-click modification) ...
The synthesis of architectural polymers with multiple reactive functionalities offers significant pr...
A new allyl terminated hyperbranched poly(ethyleneimine) was synthesized and characterized and then ...
Radical catalyzed thiol-ene reaction has become a useful alternative to the Huisgen-type click react...
Radical catalyzed thiol-ene reaction has become a useful alternative to the Huisgen-type azide-yne c...
Hyperbranched poly(ε-benzyloxycarbonyl-l-lysine) (HPlys) with multiple alkyne peripheries was synth...
Reductively degradable hyperbranched polymethacrylates with multiple peripheral alkyl bromide groups...
Well-defined polymer scaffolds convertible to (multi)functional polymer structures via selective and...
This contribution reports on the preparation of hyperbranched polymers via thiol–yne photopolymeriza...
Here, we report the synthesis of new thermoresponsive hyperbranched polymers (HBPs) via one-pot reve...
A straightforward synthetic approach to the preparation of disulfide linked hyperbranched polymers w...
This contribution reports on the preparation of functional hyperbranched polystyrene-based materials...
Self-condensation of AB(2) type monomers (containing one A-type and two B-type functional groups) ge...
Nucleophile-initiated thiol-Michael chemistry was employed to prepare a series of mono- and di-funct...
Here, we report the synthesis of new thermoresponsive hyperbranched polymers (HBPs) via one-pot reve...
A conceptual proof for the double modification (aminolysis and subsequent thiol-click modification) ...
The synthesis of architectural polymers with multiple reactive functionalities offers significant pr...
A new allyl terminated hyperbranched poly(ethyleneimine) was synthesized and characterized and then ...
Radical catalyzed thiol-ene reaction has become a useful alternative to the Huisgen-type click react...
Radical catalyzed thiol-ene reaction has become a useful alternative to the Huisgen-type azide-yne c...
Hyperbranched poly(ε-benzyloxycarbonyl-l-lysine) (HPlys) with multiple alkyne peripheries was synth...
Reductively degradable hyperbranched polymethacrylates with multiple peripheral alkyl bromide groups...
Well-defined polymer scaffolds convertible to (multi)functional polymer structures via selective and...
This contribution reports on the preparation of hyperbranched polymers via thiol–yne photopolymeriza...
Here, we report the synthesis of new thermoresponsive hyperbranched polymers (HBPs) via one-pot reve...