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Systematically Exploring Molecular Aggregation and Its Impact on Surface Tension and Viscosity in High Concentration Solutions

机译:系统研究分子聚集及其对高浓度溶液中表面张力和粘度的影响

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摘要

The aggregation structure of dye molecules has a great influence on the properties of dye solutions, especially in high concentration. Here, the dye molecular aggregation structures were investigated systemically in aqueous solutions with high concentration using three reactive dyes (O-13, R-24:1 and R-218). O-13 showed stronger aggregation than R-24:1 and R-218. This is because of the small non-conjugate side chain and its β-linked position on the naphthalene of O-13. Compared with R-218, R-24:1 showed relatively weaker aggregation due to the good solution of R-24:1. The change of different aggregate distributions in the solutions were also investigated by splitting the absorption curves. Moreover, it is found that the surface tension of solutions can be modified by the combined effect of both aggregation and the position of the hydrophilic group, which, however, also have an effect on viscosity. This exploration will provide guidance for the study of high concentration solutions.
机译:染料分子的聚集结构对染料溶液的性能有很大影响,特别是在高浓度下。在这里,使用三种活性染料(O-13,R-24:1和R-218)在高浓度水溶液中对染料分子聚集结构进行了系统研究。 O-13显示出比R-24:1和R-218更强的聚集作用。这是由于非共轭侧链较小,并且其在O-13的萘上的β连接位置。与R-218相比,由于R-24:1的良好解决方案,R-24:1表现出相对较弱的聚集。通过拆分吸收曲线,还研究了溶液中不同聚集体分布的变化。而且,发现溶液的表面张力可以通过聚集和亲水基团的位置的组合作用而改变,然而,这也对粘度有影响。这项探索将为高浓度溶液的研究提供指导。

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