A series of poly(propylene-glycol-diacrylates) (PPGDA) having molecular weights (MW) in the range 300–3,000 and an acrylic functionality near to two were synthesized by acrylation of the corresponding hydroxy-terminated oligomers with acrylic acid in the presence of p-toluensulphonic acid as a catalyst. The M¯n of the acrylated products was found slightly lower than that of the starting oligomers, indicating the occurrence of an acidic degradation reaction which does not influence the acrylic functionality. The acrylated oligomers were ultraviolet (UV) cured until a complete double bond disappearance was obtained: only in the presence of tripropylene-glycol-diacrylate (TPGDA) were small amounts of residual unsaturations revealed. Rubbery ma...
In this work, the synthesis of novel biodegradable crosslinked polyesters was explored via two diffe...
Polyurethane acrylate prepolymers with different contents of HIPIH and HIH were synthesized via reac...
Novel ionizable polymer networks were prepared from oligo(ethylene glycol) (OEG) multiacrylates and ...
Three series of poly(alkylene glycol) diacrylates, namely poly(ethylene glycol), poly(propylene glyc...
The properties of u.v. cured poly(ethylene glycol) diacrylates (PEGDA) having MWs in the range 200–2...
Copolymer networks of poly(acrylic acid) (PAA) grafted with poly(ethylene glycol) (PEG) were synthes...
The acrylation of polybutadienes was performed by reaction of acrylic acid with epoxy, epoxy-hydroxy...
A number of poly(ethyleneglycol)- and poly(propyleneglycol)- α, ω-diacrylates, with different MW in ...
Elastomeric networks are increasingly being investigated for a variety of biomedical applications in...
Elastomeric networks are increasingly being investigated for a variety of biomedical applications in...
A number of poly(ethyleneglycol)- and poly(propyleneglycol)- α, ω-diacrylates, with different MW in ...
Poly(D,L-lactide) is a degradable polymer with a long\ud history of use in medical applications. It ...
Purpose: The objective of this work was to develop composite hydrogels based on poly(ethylene glycol...
New lactide-based poly(ethylene glycol) (PEG) polymer networks (GL−PEGs) have been prepared by UV ph...
In this work we propose a new crosslinking agent and the method to use it for the synthesis of acryl...
In this work, the synthesis of novel biodegradable crosslinked polyesters was explored via two diffe...
Polyurethane acrylate prepolymers with different contents of HIPIH and HIH were synthesized via reac...
Novel ionizable polymer networks were prepared from oligo(ethylene glycol) (OEG) multiacrylates and ...
Three series of poly(alkylene glycol) diacrylates, namely poly(ethylene glycol), poly(propylene glyc...
The properties of u.v. cured poly(ethylene glycol) diacrylates (PEGDA) having MWs in the range 200–2...
Copolymer networks of poly(acrylic acid) (PAA) grafted with poly(ethylene glycol) (PEG) were synthes...
The acrylation of polybutadienes was performed by reaction of acrylic acid with epoxy, epoxy-hydroxy...
A number of poly(ethyleneglycol)- and poly(propyleneglycol)- α, ω-diacrylates, with different MW in ...
Elastomeric networks are increasingly being investigated for a variety of biomedical applications in...
Elastomeric networks are increasingly being investigated for a variety of biomedical applications in...
A number of poly(ethyleneglycol)- and poly(propyleneglycol)- α, ω-diacrylates, with different MW in ...
Poly(D,L-lactide) is a degradable polymer with a long\ud history of use in medical applications. It ...
Purpose: The objective of this work was to develop composite hydrogels based on poly(ethylene glycol...
New lactide-based poly(ethylene glycol) (PEG) polymer networks (GL−PEGs) have been prepared by UV ph...
In this work we propose a new crosslinking agent and the method to use it for the synthesis of acryl...
In this work, the synthesis of novel biodegradable crosslinked polyesters was explored via two diffe...
Polyurethane acrylate prepolymers with different contents of HIPIH and HIH were synthesized via reac...
Novel ionizable polymer networks were prepared from oligo(ethylene glycol) (OEG) multiacrylates and ...