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New Star-Branched Poly(acrylonitrile) Architectures: ATRP Synthesis and Solution Properties

机译:新的星形支化聚(丙烯腈)结构:ATRP合成和溶液性质

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摘要

Atom transfer radical polymerization (ATRP) has been chosen as ‘‘living’’/controlled free radical polymerization system to synthesize a number of novel poly(acrylonitrile) (PAN) architectures. The reaction conditions for the synthesis of linear samples with control over molar mass and molar mass distribution have been investigated together with the possibility of obtaining copolymers of acrylonitrile with small quantities of methyl acrylate (max. 5 mol-%). Well-defined star polymers with 3, 4 and 6 arms have been successfully synthesized together with linear chains initiated by a bifunctional initiator and star-branched polymers with a hyperbranched poly(ester amide) as core. Molar masses were determined by NMR and GPC with the latter leading to a significant over estimation. Solution viscosity studies indicated that the stiff structure of the PAN chains is still maintained in the homopolymer star architectures and that the incorporation of small quantities of methyl acrylate as comonomer has a stronger effect on chain flexibility than the incorporation of star-branch points.
机译:原子转移自由基聚合(ATRP)已被选作“活性” /受控自由基聚合体系,以合成许多新颖的聚(丙烯腈)(PAN)结构。已经研究了在控制摩尔质量和摩尔质量分布的情况下合成线性样品的反应条件,以及获得丙烯腈与少量丙烯酸甲酯(最大5摩尔%)的共聚物的可能性。具有3、4和6个臂的轮廓分明的星形聚合物已与双功能引发剂引发的线性链以及以超支化聚(酯酰胺)为核的星形支化聚合物成功合成。摩尔质量由NMR和GPC确定,后者导致明显的高估。溶液粘度研究表明,在均聚物星形结构中仍保持PAN链的刚性结构,并且掺入少量丙烯酸甲酯作为共聚单体比掺入星形分支点对链的柔韧性影响更大。

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