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Complexes of Mg, Ca and Zn as homogeneous catalysts for lactide polymerization

Dalton Transactions · 2009 · pp. 4832–4832
Craig A. WheatonPaul G. HayesB.J. Ireland

Abstract

Interest in the utility of polylactide as a commodity polymer has increased significantly in recent years due to numerous environmental advantages over conventional petrochemically derived plastics. As such, the development of novel catalyst systems for the ring opening polymerization of lactide has seen tremendous progress in the past decade. In particular, divalent metals (i.e. Mg, Ca and Zn) supported by monoanionic ancillary scaffolds are appealing because of their low toxicity and cost. A much less common approach involves the use of neutral ligands in combination with the aforementioned divalent metal centres. The additional valence thus renders it possible, upon reaction with traditional Lewis or Brønsted acid activators, to generate sterically and electronically unsaturated species, akin to the most widely employed olefin polymerization catalysts. This Perspective is not intended as a comprehensive review, but rather a systematic highlight of key contributions, which have served to extend the forefront of this exciting field.

biodegradable polymer synthesis and propertiesOrganometallic Complex Synthesis and CatalysisCarbon dioxide utilization in catalysisPolymerizationCatalysisLactideChemistryHomogeneousPolymerDivalentLewis acids and basesCombinatorial chemistrySteric effects
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435
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24.86
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81
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References
Polylactic Acid Technology
Advanced Materials · 2000 · 2,578 citations
Applications of life cycle assessment to NatureWorks™ polylactide (PLA) production
Polymer Degradation and Stability · 2003 · 1,051 citations
Stereospecific Olefin Polymerization with Chiral Metallocene Catalysts
Angewandte Chemie International Edition in English · 1995 · 2,701 citations
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