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Influence of terminal hydrophobe branching on the aqueous solution behavior of model hydrophobically modified ethoxylated urethane associative thickeners

机译:末端疏水基支化对模型疏水改性乙氧基化聚氨酯缔合增稠剂水溶液行为的影响

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摘要

The influence of terminal hydrophobe branching on the micellar properties of Hydrophobically modified Ethoxylated URethanes (HEURs) is addressed through fluorescence, dynamic light scattering (DLS), solution rheology, and Raman spectroscopy. Model HEURs used in this study are monodisperse and fully substituted with hydrophobic groups of different structures. Two linear hydrophobes (l-C12H25 and l-C16H33) and three branched hydrophobes [b-(C12H26), b-(C16H34), and b-(C(20)H(42)A)] are coupled to the hydroxyls of POE670 and POE195 through 4,4-methylene bis(dicyclohexyl)diisocyanate (H12MDI) units. Prior low molecular weight surfactant studies observed that a CH2 group, introduced as a branch from a linear hydrophobe, contributes approximately half to the surfactant's hydrophobicity that the same CH2 unit would add to the linear chain. Within hydrophobe equivalent comparisons, greater hydrophobic domains are indicated in pyrene's I-1/I-3 emission ratio for the linear hydrophobe HEURs, denoting a more hydrophilic core in branched HEURs. An increase in the number of -CH2- groups notably influences aqueous solution viscosities, as expected, but among equivalent hydrocarbon comparisons, the moderate-size linear hydrophobe is more viscosifying than the branched hydrophobe at high concentrations. Viscosity increases correlate with the aggregation sizes estimated from DLS studies as aggregate sizes approach 500 nm, covering small to large hydrophobes and different oxyethylene spacer lengths. Conformational differences (Raman spectroscopy) of poly(oxyethylenes) and HEURs under stagnant and flow conditions are also examined. The presence of byproduct impurities can markedly influence these results. [References: 58]
机译:通过荧光,动态光散射(DLS),溶液流变学和拉曼光谱法研究了末端疏水基团对疏水改性乙氧基化氨基甲酸酯(HEURs)胶束性能的影响。本研究中使用的HEUR模型是单分散的,并被不同结构的疏水基团完全取代。两个直链疏水基团(l-C12H25和l-C16H33)和三个支链疏水基团[b-(C12H26),b-(C16H34)和b-(C(20)H(42)A)]与以下化合物的羟基偶联POE670和POE195到4,4-亚甲基双(二环己基)二异氰酸酯(H12MDI)单元。先前的低分子量表面活性剂研究观察到,作为直链疏水物的一个分支引入的CH2基团,对表面活性剂的疏水性的贡献约为一半,而相同的CH2单元会添加到直链上。在疏水基当量的比较中,对于线性疏水基HEUR,pyr的I-1 / I-3发射比表示更大的疏水域,表示支链HEUR中的亲水性更强。如所预期的,-CH 2-基团数目的增加显着影响水溶液的粘度,但是在等效烃的比较中,在高浓度下,中型直链疏水物比支链疏水物更具粘性。当聚集体尺寸接近500 nm时,粘度增加与DLS研究估计的聚集体尺寸相关,覆盖大小不一的疏水物和不同的氧化乙烯间隔基长度。还研究了在停滞和流动条件下,聚氧乙烯和HEUR的构象差异(拉曼光谱)。副产物杂质的存在会明显影响这些结果。 [参考:58]

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