Abstract
Polylactide synthetic procedures have lately gained attention, possibly due to their biocompatibility and the environmental problems associated with fossil-fuel-based polymers. Polylactides can be obtained from natural sources such as cassava, corn, and sugar beet, and polylactides can be manufactured in a laboratory using a variety of processes that begin with lactic acid or lactide. One of the most effective synthetic pathways is through a Lewis acid catalyzed ring-opening polymerization of lactides to obtain a well-defined polymer. In this regard, calixarenes, because of their easy functionalization and tunable properties, have been widely considered to be a suitable 3D molecular scaffold for new metal complexes that can be used for lactide polymerization. This review summarizes the progress made in applying some metal-calixarene complexes in the ring-opening polymerization of lactide.
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CITATION STYLE
Sachdeva, G., Bamal, Y., Ladan, A., Tiwari, O. S., Rawat, V., Yadav, P., & Verma, V. P. (2023, April 18). Calixarene-Metal Complexes in Lactide Polymerization: The Story so Far. ACS Omega. American Chemical Society. https://doi.org/10.1021/acsomega.2c08028
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