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Synthesis of Dendronized Diblock Copolymers via Click Chemistry: The Effect of Dendronization on Phase Separation Behaviours

机译:通过点击化学合成树枝化的二嵌段共聚物:树枝化对相分离行为的影响

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摘要

A novel route towards the synthesis of well-defined linear–dendronized diblock copolymers is reported. Precursor alkyne containing diblock copolymers were modified in a highly efficient cycloaddition reaction with dendritic azides of different generation. The dendronization has been shown to be selective and could be driven to completion under ambient conditions. The phase separation of such dendronized diblock copolymers was investigated in dependence of the generation size being attached. Compared to a linear–linear diblock cppolymer as starting material the dendronization yielded in a pronounced phase separation. The nanoscaled features observed in thin films strongly depended on the dendron size and a variety of morphologies could be identified. Hence, the icombination of controlled radical polymerization and click chemistry allows for the triggering of structured surfaces in the nanometer-regime.
机译:据报道,一种合成路线明确的线性-树枝化的二嵌段共聚物的新途径。含前体炔烃的二嵌段共聚物在高效环加成反应中与不同代的树枝状叠氮化物进行了改性。已经表明,该树突化是选择性的,并且可以在环境条件下被驱使完成。根据所连接的世代大小,研究了这种树状二嵌段共聚物的相分离。与线性-线性二嵌段cppolymer作为起始原料相比,树枝化产生明显的相分离。在薄膜中观察到的纳米尺度特征在很大程度上取决于树突的大小,并且可以鉴定出各种形态。因此,受控自由基聚合和点击化学的结合允许触发纳米范围内的结构化表面。

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