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Redox control of a ring-opening polymerization catalyst
Authors:Broderick Erin M  Guo Neng  Vogel Carola S  Xu Cuiling  Sutter Jörg  Miller Jeffrey T  Meyer Karsten  Mehrkhodavandi Parisa  Diaconescu Paula L
Affiliation:Department of Chemistry & Biochemistry, University of California, Los Angeles, California 90095, USA.
Abstract:
The activity of an yttrium alkoxide complex supported by a ferrocene-based ligand was controlled using redox reagents during the ring-opening polymerization of L-lactide. The oxidized complex was characterized by X-ray crystallography and (1)H NMR, XANES, and M?ssbauer spectroscopy. Switching in situ between the oxidized and reduced yttrium complexes resulted in a change in the rate of polymerization of L-lactide. Synthesized polymers were analyzed by gel permeation chromatography. Polymerization of trimethylene carbonate was also performed with the reduced and oxidized forms of an indium alkoxide complex. The indium system showed the opposite behavior to that of yttrium, revealing a metal-based dependency on the rate of polymerization.
Keywords:
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