Unveiling the mechanistic role of lewis acidic ionic liquids in styrene polymerization
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This work describes the use of a series of Lewis
acids supported in different ionic liquids (ILs), based on an
imidazolium cation, as catalysts for the cationic polymerization of
styrene. The influence of these ILs, the effect of Lewis acids,
temperature, catalyst concentration, and the presence of organic
solvents were investigated to evaluate the best conditions for
polymerization. These catalytic systems were effective to polymerize styrene in the temperature range of 50−90 °C, obtaining
quantitative conversions in the presence of ILs in polymerization
catalyzed by small amounts of Lewis acid. It was possible to
synthesize polymers with wide ranges of number-average molar
mass, in the range of 200,000−600 g mol−1
, with a wide range of
molar-mass dispersity, ranging from 1.43 to 4.67, and glass
transition temperatures in the range of 40−71 °C by varying the catalytic system and/or the synthesis temperature. The
polymerization mechanism was investigated by ESI-MS(/MS) in positive mode with highly elucidative results. Tailored polystyrenes
were successfully synthesized due to the fundamental properties of task-specific ILs, paving the way for the industrial application of
catalyst systems based on ILs/Lewis acids.
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ARARUNA, Thainá et al. Unveiling the mechanistic role of lewis acidic ionic liquids in styrene polymerization. Acs Polymers Au, Washington, v. 6, n. 3, p. 941-952, 2026. DOI: 10.1021/acspolymersau.6c00024. Disponível em: https://pubs.acs.org/apaccd/article/6/3/941/5185676/Unveiling-the-Mechanistic-Role-of-Lewis-Acidic. Acesso em: 29 jul. 2026.