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Block-type architectures for Poly(p-Phenylene Vinylene) derivatives: A reality or an illusion?

机译:聚对苯乙炔乙烯衍生物的嵌段结构:是现实还是幻觉?

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Poly(p-Phenylene Vinylene) derivatives are synthesized mostly making use of the polymerization behavior of p-quinodimethane systems. Over the last forty years different synthetic routes have been developed, e.g. Wessling, Gilch, Xanthate and Sulphinyl route. For all these routes mechanistic studies are rather scarce and lead to a controversy between two possible mechanisms: anionic and radical polymerization. In this contribution it becomes clear that high molecular weight materials are associated with a self-initiated radical chain polymerization and low molecular weight materials are obtained via an anionic mechanism. This will be demonstrated for the model system in which a sulphinyl pre-monomer is polymerized in N-Methyl-Pyrrolidone. In this model system both these mechanisms are competing with each other. The observed effects on the product distribution of concentration of reagents, temperature and order in which the reagents are added, are consistent with the conclusion above. The question whether living polymerization can occur will be addressed for the radical mechanism. An experiment with a set of sequential polymerizations gives rise to an evolution of molecular weight consistent with the effect of simple dilution of the reaction medium. The conclusion is that a termination reaction is active, which can be identified as related to traces of oxygen. In these conditions the synthesis of block-type copolymers can not be achieved. For the anionic mechanism an argumentation against such possibility will be presented on the basis of relative acidities.
机译:聚(对苯乙炔乙烯)衍生物的合成主要利用对喹啉二甲烷体系的聚合行为。在过去的40年中,已经开发出了不同的合成路线,例如Wessling,Gilch,Xanthate和Sulphinyl路线。对于所有这些途径,机理研究都很少,并且导致了两种可能的机理之间的争论:阴离子和自由基聚合。在这一贡献中,很明显高分子量材料与自引发的自由基链聚合反应相关,而低分子量材料是通过阴离子机理获得的。对于其中亚硫酰基预单体在N-甲基-吡咯烷酮中聚合的模型系统将证明这一点。在此模型系统中,这两种机制相互竞争。观察到的对试剂浓度,温度和添加顺序的产物分布的影响与上述结论一致。对于自由基机理,将解决是否可以发生活性聚合的问题。一组连续聚合的实验引起分子量的演变,这与反应介质的简单稀释的效果一致。结论是终止反应是活跃的,可以将其确定为与微量氧有关。在这些条件下,不能实现嵌段共聚物的合成。对于阴离子机理,将根据相对酸度提出反对这种可能性的论据。

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