Synthesis of Polymer Brushes by Surface-Initiated Controlled/Living Free Radical Polymerization Techniques

Kübra Hüküm Özkan, Esma Mutlutürk, Tugba D Caliskan, T. Caykara
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引用次数: 1

Abstract

The surface modifications are necessary to alter the inherent surface physical/chemical properties of materials in terms of adhesion, wettability, friction, biocompatibility etc. for using in textile, electronic and biomedical industries. Surface modifications are usually made by grafting of polymer brushes to the solid substrates. The grafting process allows controlling and manipulation of surface properties without changing the chemical structure of polymers. Besides their chemical structures, grafting density of polymer brushes and average distance between the polymer chains attached to the surface are also important parameters, affecting the intended use of the grafted materials. Synthesis of functional polymer brushes is generally carried out by one of surface-initiated controlled/living free radical polymerization techniques, namely Atom Transfer Radical Polymerization (ATRP), Nitroxide-Mediated Polymerization (NMP), Photoiniferter-Mediated Polymerization (PIMP) and Reversible Addition-Fragmentation Chain Transfer Polymerization (RAFT). This review reports the strategies of these techniques for generating polymer brushes and summarizes the application of polymer brushes in multiple fields.
表面引发控制/活性自由基聚合技术合成聚合物刷
在纺织、电子和生物医学工业中,为了改变材料在附着力、润湿性、摩擦性、生物相容性等方面的固有表面物理/化学特性,表面改性是必要的。表面改性通常是通过将聚合物刷接枝到固体基板上来实现的。接枝工艺允许在不改变聚合物化学结构的情况下控制和操纵表面性质。除化学结构外,聚合物刷的接枝密度和附着在表面的聚合物链之间的平均距离也是影响接枝材料预期用途的重要参数。功能高分子刷的合成一般采用表面引发的可控/活性自由基聚合技术之一,即原子转移自由基聚合(ATRP)、氮氧化物介导聚合(NMP)、光干扰物介导聚合(PIMP)和可逆加成-破碎链转移聚合(RAFT)。本文综述了聚合物刷的制备方法,并对聚合物刷在多个领域的应用进行了综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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