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Living/controlled radical polymerizations in dispersed phase systems

机译:分散相系统中的活性/受控自由基聚合

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Living/controlled radical polymerization provides a route to synthesizing materials with designed microstructure and narrow molecular weight distributions. A variety of living radical systems have been developed in recent years, and are based on either reversible termination (SFRP, ATRP) or reversible transfer mechanisms (RAFT, degenerative transfer). Application of living radical polymerization to herterogeneous systems such as emulsion and miniemulsion polymerization may provide process and economic advantages over the traditional homogeneous bulk and solution polymerizations. However, adaptation of living radical chemistry to aqueous dispersions poses several challenges relating to maintaining effective control over the growth of living chains. These challenges originate from having two or even three phases in the reaction mixture, which can lead to issues related to phase partitioning of the controlling agent, transport of the controlling agent between phases, the role of aqueous phase kinetics, and the phenomena of particle nucleation and colloidal stability. This review examines recent progress in this area, with an emphasis on unresolved issues and future opportunities.
机译:活性/受控自由基聚合为合成具有设计的微观结构和窄分子量分布的材料提供了一条途径。近年来,已经开发了多种活泼的自由基系统,它们基于可逆终止(SFRP,ATRP)或可逆转移机制(RAFT,简并转移)。相对于传统的均相本体和溶液聚合,将活性自由基聚合应用于均相体系(例如乳液聚合和细乳液聚合)可提供工艺和经济优势。然而,使活性自由基化学物适应水分散体提出了与保持对活性链增长的有效控制有关的若干挑战。这些挑战源于反应混合物中具有两相甚至三相,这可能导致与控制剂的相分配,控制剂在各相之间的转移,水相动力学的作用以及颗粒成核现象有关的问题。和胶体稳定性。这次审查检查了该领域的最新进展,重点是未解决的问题和未来的机会。

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