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End-Grafted Polymer Chains onto Inorganic Nano-Objects

机译:端接聚合物链到无机纳米物体上

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摘要

Organic/inorganic nanohybrid materials have attracted particular scientific and technological interest because they combine the properties of the organic and the inorganic component. Inorganic nanoparticles exhibit interesting electrical, optical, magnetic and/or catalytic properties, which are related with their nano-scale dimensions. However, their high surface-to-volume ratio often induces agglomeration and leads to the loss of their attractive properties. Surface modification of the inorganic nano-objects with physically or chemically end-tethered polymer chains has been employed to overcome this problem. Covalent tethered polymer chains are realized by three different approaches: the “grafting to”, the “grafting from” and the “grafting through” method. This article reviews the synthesis of end-grafted polymer chains onto inorganic nanoparticles using “controlled/living” polymerization techniques, which allow control over the polymer characteristics and the grafting density of the end-tethered polymer chains.
机译:由于有机/无机纳米混合材料结合了有机和无机成分的特性,因此引起了特别的科学和技术兴趣。无机纳米粒子表现出令人感兴趣的电,光,磁和/或催化性能,这与其纳米级尺寸有关。然而,它们高的表面体积比经常引起团聚并导致其吸引力的丧失。为了克服该问题,已经采用了对无机纳米物体进行物理或化学端接的聚合物链的表面改性。共价连接的聚合物链可通过三种不同的方法实现:“嫁接到”,“从……嫁接”和“通过嫁接”方法。本文回顾了使用“受控/活性”聚合技术将端接枝聚合物链合成到无机纳米颗粒上的方法,该技术可控制端接的聚合物链的聚合物特性和接枝密度。

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