TY - JOUR
T1 - Ring-opening polymerization of imidazole epoxides for the synthesis of imidazole-substituted polyethylene oxides
AU - Ramirez, Sean M.
AU - Layman, John M.
AU - Bissel, Philippe
AU - Long, Timothy Edward
PY - 2009/11/10
Y1 - 2009/11/10
N2 - The synthesis and polymerization of imidazole-substituted epoxides, a novel family of monomers and polymers, for potential incorporation into polymeric therapeutics, ion- transport membranes, and catalysis/metal coordination has been reported. Imidazole-substituted epoxide monomers, l-tritylimidazole-2- ethylene oxide (TTm-2-EO) and l-tritylimidazole-4-ethylene oxide (TTm-4-EO), were prepared using a three-step and two-step synthetic approach starting from imidazole (Tm) or imidazole-4-car- boxaldehyde (Tm-4-ca). The ability to tune molecular weight, topology, architecture, and functionality has catalyzed the discovery of biocompatible polymers for emerging biomedical technologies. The polymerization reactions were initially yellow, heterogeneous solutions that became homogeneous as polymerization progressed. Novel imidazole-substituted epoxide monomers were successfully synthesized and polymerized using anionic ROP.
AB - The synthesis and polymerization of imidazole-substituted epoxides, a novel family of monomers and polymers, for potential incorporation into polymeric therapeutics, ion- transport membranes, and catalysis/metal coordination has been reported. Imidazole-substituted epoxide monomers, l-tritylimidazole-2- ethylene oxide (TTm-2-EO) and l-tritylimidazole-4-ethylene oxide (TTm-4-EO), were prepared using a three-step and two-step synthetic approach starting from imidazole (Tm) or imidazole-4-car- boxaldehyde (Tm-4-ca). The ability to tune molecular weight, topology, architecture, and functionality has catalyzed the discovery of biocompatible polymers for emerging biomedical technologies. The polymerization reactions were initially yellow, heterogeneous solutions that became homogeneous as polymerization progressed. Novel imidazole-substituted epoxide monomers were successfully synthesized and polymerized using anionic ROP.
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U2 - 10.1021/ma901745d
DO - 10.1021/ma901745d
M3 - Article
AN - SCOPUS:70449450031
SN - 0024-9297
VL - 42
SP - 8010
EP - 8012
JO - Macromolecules
JF - Macromolecules
IS - 21
ER -