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Metal Free Reversible-Deactivation Radical Polymerizations: Advances Challenges and Opportunities

机译:无金属可逆失活自由基聚合:进展挑战和机遇

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摘要

A considerable amount of the worldwide industrial production of synthetic polymers is currently based on radical polymerization methods. The steadily increasing demand on high performance plastics and tailored polymers which serve specialized applications is driven by the development of new techniques to enable control of polymerization reactions on a molecular level. Contrary to conventional radical polymerization, reversible-deactivation radical polymerization (RDRP) techniques provide the possibility to prepare polymers with well-defined structures and functionalities. The review provides a comprehensive summary over the development of the three most important RDRP methods, which are nitroxide mediated radical polymerization, atom transfer radical polymerization and reversible addition fragmentation chain transfer polymerization. The focus thereby is set on the newest developments in transition metal free systems, which allow using these techniques for biological or biomedical applications. After each section selected examples from materials synthesis and application to biomedical materials are summarized.
机译:目前,全世界范围内大量的合成聚合物工业生产都基于自由基聚合方法。对新的技​​术的发展推动了对用于特殊应用的高性能塑料和定制聚合物的稳定增长的需求,这些新技术能够在分子水平上控制聚合反应。与常规自由基聚合相反,可逆失活自由基聚合(RDRP)技术为制备具有明确定义的结构和功能的聚合物提供了可能性。该综述提供了对三种最重要的RDRP方法的发展的全面总结,这三种方法分别是氮氧化物介导的自由基聚合,原子转移自由基聚合和可逆加成断裂链转移聚合。因此,重点是无过渡金属系统的最新发展,该系统允许将这些技术用于生物或生物医学应用。在每个部分之后,总结了从材料合成和应用于生物医学材料中选择的示例。

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