peer reviewedCommercially available Al isopiopoxide (Al(OiPr)3) has proved to be an efficient initiator for the bulk polymerization of lactide. The ring-opening polymerization proceeds through a "coordination-insertion" mechanism and the selective rupture of the acyl-oxygen bond of the monomer Polyester chains are selectively end-capped with an aluminum alkoxide and an isopropoxy group. Therefore, substitution of Al tris(4-penten-1-olate) for Al(OiPr)3 leads to the formation of macromonomers In the temperature range from 110 to 150°C, polymerization is "living", i.e. the molecular weight can be predicted by the initial monomer-to-Al molar ratio and the monomer conversion. The narrower polydispetsity of poly(L,L-lactide) compared to the amor...
peer reviewedWhenever added with triethylaluminum, primary amines have been found to be effective in...
Copolymerization of mixtures of epsilon-caprolactone (epsilon-CL) and D,L- or L-lactide has been ini...
Al((OPr)-Pr-i)(3), which is one of the most efficient initiators for the living ring-opening polymer...
Commercially available Al isopiopoxide (Al(OiPr)3) has proved to be an efficient initiator for the b...
Aluminum isopropoxide is an effective initiator for the polymerization of lactides in toluene at 70-...
End-functional aliphatic polyesters have been synthesized by ring-opening polymerization (ROP) of ep...
A high increase in the bulk polymerization rate of L,L-lactide and racemic D,L-lactide is observed w...
peer reviewedThe thermal stability of poly(L-lactide) and L/D-lactide stereocopolymers polymerized i...
peer reviewedStructure and coordinative association of the propagating species have been studied by ...
peer reviewedAluminium alkoxides, such as Al(OiPr)3 or Et3‐pAl(O (CH2)2X)p with 1≤p≤3, are very effe...
peer reviewedFunctional aluminum alkoxides, such as Et3–pAl(OCH2X)p, where p = 1,3 and X = a functio...
Aluminum isopropoxide is known to be an effective initiator for the ring-opening polymerization of l...
The ring-opening polymerization of lactides has been studied in bulk using either 2-ethylhexanoic ac...
The aluminium alkoxide mediated ring-opening polymerization of (di)lactones offers a great versatili...
The functional aluminum alkoxide, Et2Al-O-(CH2)2-O-C(O)-C(CH3)=CH2, is a very effective initiator fo...
peer reviewedWhenever added with triethylaluminum, primary amines have been found to be effective in...
Copolymerization of mixtures of epsilon-caprolactone (epsilon-CL) and D,L- or L-lactide has been ini...
Al((OPr)-Pr-i)(3), which is one of the most efficient initiators for the living ring-opening polymer...
Commercially available Al isopiopoxide (Al(OiPr)3) has proved to be an efficient initiator for the b...
Aluminum isopropoxide is an effective initiator for the polymerization of lactides in toluene at 70-...
End-functional aliphatic polyesters have been synthesized by ring-opening polymerization (ROP) of ep...
A high increase in the bulk polymerization rate of L,L-lactide and racemic D,L-lactide is observed w...
peer reviewedThe thermal stability of poly(L-lactide) and L/D-lactide stereocopolymers polymerized i...
peer reviewedStructure and coordinative association of the propagating species have been studied by ...
peer reviewedAluminium alkoxides, such as Al(OiPr)3 or Et3‐pAl(O (CH2)2X)p with 1≤p≤3, are very effe...
peer reviewedFunctional aluminum alkoxides, such as Et3–pAl(OCH2X)p, where p = 1,3 and X = a functio...
Aluminum isopropoxide is known to be an effective initiator for the ring-opening polymerization of l...
The ring-opening polymerization of lactides has been studied in bulk using either 2-ethylhexanoic ac...
The aluminium alkoxide mediated ring-opening polymerization of (di)lactones offers a great versatili...
The functional aluminum alkoxide, Et2Al-O-(CH2)2-O-C(O)-C(CH3)=CH2, is a very effective initiator fo...
peer reviewedWhenever added with triethylaluminum, primary amines have been found to be effective in...
Copolymerization of mixtures of epsilon-caprolactone (epsilon-CL) and D,L- or L-lactide has been ini...
Al((OPr)-Pr-i)(3), which is one of the most efficient initiators for the living ring-opening polymer...