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Self-controlled synthesis of hyperbranched poly(ether ketone)s from A(3)+B-2 approach via different solubilities of monomers in the reaction medium

机译:通过单体在反应介质中的不同溶解度自A(3)+ B-2方法自控合成超支化聚醚醚

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摘要

Hyperbranched poly(ether ketone)s (PEK's) were synthesized via A(3) + B-2 polymerization approach without forming cross-linked products, because the polymer-forming process based on Friedel-Crafts reaction was kinetically controlled by the solubility difference of monomers in the viscous hydrophilic reaction medium, poly(phosphoric acid) (PPA)/phosphorus pentoxide (P2O5). The hydrophilic trimesic acid as an A(3) monomer is soluble in the reaction medium, while hydrophobic diphenyl ether and 1,4-diphenoxybenzene as B-2 monomers are marginally soluble. It is hypothesized that the gelation was avoided because of the following two factors: (i) self-regulated feeding of the arylether monomers into the system driven by their poor solubility and phase separation from PPA/P2O5 medium; (ii) reaction-medium-induced isolation of growing macromolecules promoted by the high bulk viscosity. Both polymerization experiments based on equimolar or equifunctional stoichiometry (A(3):B-2) resulted in completely soluble hyperbranched PEK's in polar aprotic solvents when these polymers contained a little amount of solvent residues and only in strong acids if they were rigorously dried. The structural analysis by using MALDI-TOF mass spectroscopy in the low molar mass region provided further confirmation that there was no trace of networks; various sizes of cyclics were detected instead.
机译:通过A(3)+ B-2聚合方法合成超支化聚醚醚(PEK's)而不形成交联产物,这是因为基于Friedel-Crafts反应的聚合物形成过程是通过溶解度的变化来动力学控制的。粘性亲水反应介质中的单体,聚磷酸(PPA)/五氧化二磷(P2O5)。亲水性偏苯三酸作为A(3)单体可溶于反应介质,而疏水性二苯醚和1,4-二苯氧基苯作为B-2单体则微溶于水。假设避免凝胶化是由于以下两个因素:(i)芳族醚单体自溶性差以及从PPA / P2O5介质中的相分离导致的自调节进料。 (ii)由反应介质诱导的由高堆积粘度促进的生长中大分子的分离。两种基于等摩尔或等官能化学计量法(A(3):B-2)的聚合实验均导致极性非质子溶剂中完全溶解的超支化PEK's含有少量溶剂残留物,如果严格干燥,则仅在强酸中。通过在低摩尔质量范围内使用MALDI-TOF质谱进行结构分析,进一步证实了没有痕迹的网络。而是检测到各种大小的循环。

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