Terpolymerizations of ( rac )-β-butyrolactone (BBL), cyclohexene oxide (CHO), and carbon dioxide were realized in one-pot reactions utilizing a Lewis acid BDI CF3 -Zn-N(SiMe 3 ) 2 ( 1 ) catalyst. The type of polymerization can be regulated and switched between ring-opening polymerization (ROP) of BBL and CHO/CO 2 copolymerization by the presence of CO 2 in the reaction mixture. Applying 3 bar CO 2 to the three-component system leads to similar reaction rates for copolymerization and ROP and therefore to a terpolymer with a statistical composition, whereas 40 bar CO 2 affords exclusive copolymerization of CHO/CO 2 . Two-dimensional NMR spectroscopy and polarimetry provided a deeper understanding of the underlying mechanism. Furthermore, copolymerization of cyclopentene oxide (CPO) and CO 2 was performed, resulting in the highest reported TOF of 3200 h –1 together with 99% polycarbonate selectivity. Terpolymerizations of CPO/CO 2 and BBL were successfully conducted using the established reaction pathways.
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Kernbichl et al. (2017) studied this question.
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