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首页> 外文期刊>Angewandte Chemie >Janus Graft Block Copolymers: Design of a Polymer Architecture for Independently Tuned Nanostructures and Polymer Properties
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Janus Graft Block Copolymers: Design of a Polymer Architecture for Independently Tuned Nanostructures and Polymer Properties

机译:Janus接枝块共聚物:用于独立调谐纳米结构和聚合物性质的聚合物结构的设计

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摘要

The graft-through synthesis of Janus graft block copolymers (GBCPs) from branched macromonomers composed of various combinations of homopolymers is presented. Self-assembly of GBCPs resulted in ordered nanostructures with ultra-small domain sizes down to 2.8nm (half-pitch). The grafted architecture introduces an additional parameter, the backbone length, which enables control over the thermomechanical properties and processability of the GBCPs independently of their self-assembled nanostructures. The simple synthetic route to GBCPs and the possibility of using a variety of polymer combinations contribute to the universality of this technique.
机译:提出了由由各种均聚物组成的支链大分子单体的Janus接枝嵌段共聚物(GBCPS)的接枝。 GBCP的自组装导致有序纳米结构,超小域尺寸下降至2.8nm(半间距)。 接枝的架构引入了附加参数,骨干长度,其能够独立于其自组装纳米结构控制GBCP的热机械性能和可加工性。 GBCP的简单合成途径和使用各种聚合物组合的可能性有助于这种技术的普遍性。

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