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首页> 外文期刊>Radiation Physics and Chemistry >Nanostructuring of polymers by controlling of ionizing radiation-induced free radical polymerization, copolymerization, grafting and crosslinking by RAFT mechanism
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Nanostructuring of polymers by controlling of ionizing radiation-induced free radical polymerization, copolymerization, grafting and crosslinking by RAFT mechanism

机译:通过控制离电辐射诱导的自由基聚合,共聚合,嫁接和交联通过筏机构进行纳米结构

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摘要

Free radical polymerization technique is the most prevalent form of polymerization from academic and commercial perspectives which is broadly applicable to a wide range of monomers. Versatility of this technique is due to the possibility of using various processes that create the free radicals. Ionizing radiation is one of the most direct and easy tools of generating radicals to initiate polymerization, copolymerization, grafting and cross-linking of vinyl and vinylidene type of monomers. Despite its numerous advantages free radical polymerization has the lack of control neither in the molecular weight and its distribution nor on the architecture of polymers. This deficiency has been overcome by using special chain transfer agents that provide reversible addition-fragmentation chain transfer (RAFT) that allows the synthesis of polymers with precise, predetermined molecular weights with very narrow dispersity. In this paper we review the state-of-the-art of radiation-induced RAFT-mediated polymerization for the synthesis of homo-, block-, graft and crosslinked polymers by showing the potential of this technique for some nanotechnology applications.
机译:自由基聚合技术是来自学术和商业观点的最普遍的聚合形式,其广泛适用于各种单体。这种技术的多功能性是由于使用产生自由基的各种过程的可能性。电离辐射是产生自由基以引发聚合,共聚,嫁接和交联的最直接和简单的工具之一,乙烯基和亚乙烯基类型的单体。尽管其众多优势,自由基聚合既不缺乏分子量缺乏控制,也没有缺乏控制性,也不是聚合物的结构。通过使用提供可逆添加 - 碎片链转移(筏)的特殊链转移剂克服了这种缺乏,其允许合成具有精确的预定分子量的聚合物,具有非常窄的分散性。在本文中,我们通过显示一些纳米技术应用的这种技术的潜力来审查辐射诱导的筏介导的聚合,用于合成均外,嵌段,移植物和交联聚合物。

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