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Effect of core-forming molecules on molecular weight distribution and degree of branching in the synthesis of hyperbranched polymers

机译:成核分子对超支化聚合物合成中分子量分布和支化度的影响

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The polydispersity index, the molecular weight distribution (MWD), and the degree of branching (<(DB)over bar>) are calculated for hyperbranched polymers obtained in self-condensing vinyl polymerization of AB* monomers in the presence of a core-forming molecule (i.e. a multifunctional initiator, B-f*). Two cases are considered: (a) batch polymerization, i.e., with all components mixed together; (b) semibatch polymerization, i.e., slow addition of the monomer to the core-forming molecule. The results obtained for the latter case are also valid for polycondensation of AB(2) monomers. The presence of core-forming molecules leads to a considerable narrowing of the MWD's, the polydispersity index decreasing with increasing initiator functionality, f. In the batch process, we find (P) over bar(w)/(P) over bar(n) approximate to 1 + (P) over bar(n)/f(2) and in the semibatch mode (P) over bar(w)/(P) over bar(n) approximate to 1 + 1/f. The degree of branching obtained in semibatch mode approaches <(DB)over bar> = 2/3, which is higher than for the synthesis using a batch process with or without initiator. The polymers resulting from semibatch mode are predicted to consist of highly branched cores, while the outer parts of the molecules contain the majority of the functional groups. Thus, they are closer to dendrimers than the polymers obtained in batch mode. [References: 15]
机译:计算在形成核的情况下AB *单体自缩合乙烯基聚合得到的超支化聚合物的多分散指数,分子量分布(MWD)和支化度(<(DB)over bar>)分子(即多功能引发剂Bf *)。考虑了两种情况:(a)分批聚合,即所有组分混合在一起; (b)半间歇聚合,即将单体缓慢加到形成核的分子中。对于后一种情况获得的结果对于AB(2)单体的缩聚也有效。形成芯的分子的存在导致MWD的相当大的缩小,多分散指数随引发剂官能度f的增加而降低。在批处理过程中,我们发现(p)超过bar(w)/(P)超过bar(n)大约等于1 +(P)超过bar(n)/ f(2)并以半批量模式(P)超过bar(w)/(P)超过bar(n)大约为1 + 1 / f。在半分批模式下获得的支化度接近<(DBoverover bar)= 2/3,这比使用带有或不带有引发剂的间歇过程进行合成的分枝度高。预测由半间歇模式产生的聚合物由高度支化的核组成,而分子的外部包含大部分官能团。因此,它们比以分批方式获得的聚合物更接近树枝状聚合物。 [参考:15]

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