Reversible Addition-Fragmentation Chain-Transfer Polymerization in Supercritical CO(2): A Review

超临界CO₂中可逆加成-断裂链转移聚合反应:综述

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Abstract

The development of cleaner, more environmentally friendly processes in polymerization technology is crucial due to the prevalent use of volatile organic solvents (VOCs), which are harmful and toxic. Future regulations are likely to limit or ban VOCs. This review explores the use of supercritical solvents, specifically supercritical CO(2) (scCO(2)), in polymerization processes. The study focuses on reversible addition-fragmentation chain-transfer (RAFT) induced homo-polymerization of various monomers using specific chain transfer agents (CTAs) in scCO(2). RAFT polymerization, a reversible deactivation radical polymerization (RDRP) polymerization, relies heavily on the choice of CTA, which significantly influences the dispersity and molar mass of the resulting polymers. Stabilizers are also crucial in controlling product specifications for polymerizations in supercritical CO(2), except for fluor-based polymers, although they must be removed and preferably recycled to ensure product purity and sustainability. The review notes that achieving high molar mass through RAFT polymerization in scCO(2) is challenging due to solubility limits, which lead to polymer precipitation. Despite this, RAFT polymerization in scCO(2) shows promise for sustainable, circular production of low molar mass polymers, although these cannot yet be fully considered green products.

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