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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Influence of substituted structure of Percec-type mini-dendritic end groups on aggregation and rheology of hydrophobically modified ethoxylated urethanes (HEURs) in aqueous solution
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Influence of substituted structure of Percec-type mini-dendritic end groups on aggregation and rheology of hydrophobically modified ethoxylated urethanes (HEURs) in aqueous solution

机译:Percec型迷你树突末端基因替代结构对水溶液中疏水性改性乙氧基氨基甲酸酯(HEURS)的聚集和流变学的影响

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AbstractPercec-type substituted benzyl alcohol mini-dendrons as new hydrophobic end-cappers can effectively improve the thickening performance of hydrophobically modified ethoxylated urethanes (HEURs) in aqueous solution. To demonstrate the effects of substituted structure of Percec-type mini-dendritic end groups on aggregation and rheological properties of HEURs in aqueous solution and latex, three model HEURs end-functionalized by mono-, di- and tri-substituted benzyl alcohol mini-dendrons were synthesized, respectively. For a reasonable comparison, the total carbon number of substituted alkyl tails is set to be 24 for the three mini-dendritic end groups: HOCH2-Ph-C24H49(C24), HOCH2-Ph-(C12H25)2(2C12) and HOCH2-Ph-(C8H17)3(3C8), which respectively correspond to single-, two- and three-tail according to their substituted degrees. Interestingly, rheological properties of these HEURs in aqueous solution and latex significantly depend on the substituted degree of mini-dendritic hydrophobes. The high-substituted mini-dendritic hydrophobes help HEURs to form a strong physical network with high thickening performance and fast relaxation in both aqueous solution and latex, because shorter alkyl tails in high-substituted dendritic hydrophobes
机译:<![CDATA [ 抽象 Percec-型取代苄醇迷你树形作为新的疏水结束 - 贴点式,可以有效地提高疏水性的增厚性能在水溶液中改性乙氧基化氨基甲酸酯(HEURS)。为了证明Percec型迷你 - 树突结束基因的替代结构对水溶液和乳胶水溶液中雄性聚集和流变性质的影响,通过单甲基和三取代的苄醇迷你树形液结束 - 官能化三种模型官能化分别合成。对于合理的比较,所取代的烷基尾部的总碳数被设定为34次迷你树突末端组:Hoch 2 - pH -c 24> 24 h 49 C24 ),HOCH 2 - pH - (C 12 h 25 2 2c12 )和hoch 2 - ph - (c 8 h 17 3 3c8 ),它们根据其替换度分别对应于单个,两尾和三尾。有趣的是,这些Heurs在水溶液和乳胶中的流变性质显着取决于取代的迷你树突式疏水物。高取代的迷你树突式疏水物有助于具有高增厚性能和水溶液和乳胶的高增厚性能和快速松弛的强大物理网络,因为在高取代的树突式疏水中短的烷基尾部

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