首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Influence of method of preparation of solid, double-metal cyanide complexes on their catalytic activity for synthesis of hyperbranched polymers
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Influence of method of preparation of solid, double-metal cyanide complexes on their catalytic activity for synthesis of hyperbranched polymers

机译:固体双金属氰化物配合物的制备方法对其催化活性的影响

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摘要

Catalytic activity of a series of Fe-Zn double-metal cyanide (DMC) complexes with varying structural and acidic properties has been investigated for the synthesis of hyperbranched polyesters (HPs) from glycerol and succinic acid/adipic acid. The DMC complexes were prepared using different complexing and co-complexing agents. Hydrophobicity of the surface, Lewis acidity and micro-mesoporous architecture are the critical features of DMC enabled control on gelation process in preparing HPs of high degree of branching. The micro-mesoporous architecture of DMC acts as a nano-reactor for reactant molecules to form primary condensation products which further polymerize yielding dendrimers. Hyperbranched polyesters of degree of branching as high as 90% could be achieved without gelation using DMC catalysts.
机译:已经研究了一系列具有不同结构和酸性性质的Fe-Zn双金属氰化物(DMC)配合物的催化活性,用于由甘油和琥珀酸/己二酸合成超支化聚酯(HPs)。使用不同的络合剂和共络合剂制备DMC络合物。表面的疏水性,路易斯酸度和微介孔结构是DMC能够控制制备高支化HP的胶凝过程的关键特征。 DMC的微介孔结构充当反应物分子的纳米反应器,形成初级缩合产物,进一步聚合生成的树枝状聚合物。如果不使用DMC催化剂进行胶凝,则可以获得支化度高达90%的超支化聚酯。

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