In order for synthetic polymers to find widespread practical application as biomaterials, their syntheses must be easy to perform, utilising freely available building blocks, and should generate products which have no adverse effects on cells or tissue. In addition, it is highly desirable that the synthesis platform for the biomaterials can be adapted to generate polymers with a range of physical properties and macromolecular architectures, and with multiple functional handles to allow derivatisation with 'actives' for sensing or therapy. Here we describe the syntheses of amphiphilic tri- and tetra-block copolymers, using diazabicyclo[5.4.0]undec-5-ene (DBU) as a metal-free catalyst for ring-opening polymerisations of the widely-utilised mo...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
Rapid renal clearance, liver accumulation, proteolytic degradation and non-specificity are challenge...
Sequential ring-opening and reversible addition–fragmentation chain transfer (RAFT) polymerization w...
In order for synthetic polymers to find widespread practical application as biomaterials, their synt...
Amphiphilic polymeric materials have been used in pharmaceutical and biotechnology products for deca...
The biocompatibility, biodegradability, and responsiveness of poly(β‐amino esters) (PBAEs) has led t...
A Passerini three-component polymerization was performed for the synthesis of amphiphilic star-shape...
Amphiphilic block co-polymers composed of poly(ethylene glycol)-co-poly(lactide)-co-poly(2-((tert-bu...
Tese de doutoramento em Engenharia Química, apresentada ao Departamento de Engenharia Química da Fac...
Bio-based triblock copolyesters were synthesized by ring-opening polymerization of l-lactide in solu...
In this research, several block copolymers were synthesized and characterized with regard to possibl...
Development of novel biodegradable polymers from renewable resources has attracted attention due to ...
Amphiphilic block copolymers are of specific interest in the field of nanomedicine, and are used to ...
Biodegradable amphiphilic diblock copolymers based on an aliphatic ester block and various hydrophil...
Metal-free catalysis was successfully applied to polymerize ¿-pentadecalactone (PDL) by ring-opening...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
Rapid renal clearance, liver accumulation, proteolytic degradation and non-specificity are challenge...
Sequential ring-opening and reversible addition–fragmentation chain transfer (RAFT) polymerization w...
In order for synthetic polymers to find widespread practical application as biomaterials, their synt...
Amphiphilic polymeric materials have been used in pharmaceutical and biotechnology products for deca...
The biocompatibility, biodegradability, and responsiveness of poly(β‐amino esters) (PBAEs) has led t...
A Passerini three-component polymerization was performed for the synthesis of amphiphilic star-shape...
Amphiphilic block co-polymers composed of poly(ethylene glycol)-co-poly(lactide)-co-poly(2-((tert-bu...
Tese de doutoramento em Engenharia Química, apresentada ao Departamento de Engenharia Química da Fac...
Bio-based triblock copolyesters were synthesized by ring-opening polymerization of l-lactide in solu...
In this research, several block copolymers were synthesized and characterized with regard to possibl...
Development of novel biodegradable polymers from renewable resources has attracted attention due to ...
Amphiphilic block copolymers are of specific interest in the field of nanomedicine, and are used to ...
Biodegradable amphiphilic diblock copolymers based on an aliphatic ester block and various hydrophil...
Metal-free catalysis was successfully applied to polymerize ¿-pentadecalactone (PDL) by ring-opening...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
Rapid renal clearance, liver accumulation, proteolytic degradation and non-specificity are challenge...
Sequential ring-opening and reversible addition–fragmentation chain transfer (RAFT) polymerization w...