SnOct2-Catalyzed and Alcohol-Initiated ROPS of l-Lactide—Control of the Molecular Weight and the Role of Cyclization

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Abstract

Ring-opening polymerizations (ROP) of l-lactide (LA) are conducted in bulk at 130, 160, or 180 °C and are initiated with two different alcohols at 160 °C. The lactide/initiator ratio (LA/In) is varied from 50/1 (20/1 at 180 °C) to 900/1 and the lactide/catalyst ratio (LA/Cat) between 2000/1 and 8000/1. At all temperatures a nearly perfect control of number average molecular weight (Mn) via the LA/In ratio is feasible up to LA/In = 200/1, but at higher ratios the Mn value lags behind the theoretical values and the discrepancy increases with higher LA/Cat ratios. Variation of the LA/Cat ratio influences the formation of cycles but does not significantly influence Mn, when the LA/In ratio is kept constant. The formation of cycles is favored by lower In/Cat ratios and is the main reason for the unsatisfactory control of Mn at high LA/In ratios. The results also suggest that the cycles are mainly or exclusively formed by end-to-end cyclization and not, as believed previously, by back-biting.

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Kricheldorf, H. R., Weidner, S. M., & Scheliga, F. (2022). SnOct2-Catalyzed and Alcohol-Initiated ROPS of l-Lactide—Control of the Molecular Weight and the Role of Cyclization. Macromolecular Chemistry and Physics, 223(6). https://doi.org/10.1002/macp.202100464

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