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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effects of hydrophobic substituents and salt on core-shell aggregates of hydrophobically modified chitosan: Light scattering study
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Effects of hydrophobic substituents and salt on core-shell aggregates of hydrophobically modified chitosan: Light scattering study

机译:疏水取代基和盐对疏水改性壳聚糖核-壳聚集体的影响:光散射研究

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In this study we examine two methods of enhancement of aggregation of hydrophobically modified chitosan in dilute aqueous solutions: by increasing the content of n-dodecyl substituents, favoring hydrophobic association, and by increasing the amount of added low molecular weight salt, screening the electrostatic repulsion between similarly charged aggregating chains. By static and dynamic light scattering it was demonstrated that at the growth of the content of hydrophobic groups in the polymer (2-4 mol %) and of the amount of salt in solution (0.025-0.1 M) the weight fraction of aggregates increases, but the aggregation number remains unchanged. This behavior was attributed to the core-shell structure of the aggregates, which provides a low surface energy and strong attraction of associating groups inside the core. At the same time, the effects of the content of hydrophobic groups in the polymer and the ionic strength of the solution on the radii of the aggregates are quite different. Increasing the content of hydrophobic groups induces growth of the gyration radii of the aggregates, but does not affect their hydrodynamic radii. These data suggest the expansion of the hydrophobic core of the aggregates and the contraction of their highly swollen shell. On the other hand, increasing the salt concentration leads to a decrease of both the gyration and hydrodynamic radii of the aggregates, which is due to partial screening of electrostatic repulsion between similarly charged units and lowering of the osmotic pressure of counterions confined inside the aggregates.
机译:在这项研究中,我们研究了两种在稀水溶液中增强疏水改性壳聚糖聚集的方法:通过增加正十二烷基取代基的含量,促进疏水缔合,以及通过增加低分子量盐的添加量,筛选静电排斥力在收费相似的聚合链之间。通过静态和动态光散射表明,随着聚合物中疏水基团含量的增加(2-4 mol%)和溶液中盐含量的增加(0.025-0.1 M),聚集体的重量分数增加,但聚合次数保持不变。该行为归因于聚集体的核-壳结构,该结构提供了较低的表面能和在核内的缔合基团具有较强的吸引力。同时,聚合物中疏水基团的含量和溶液的离子强度对聚集体半径的影响是完全不同的。疏水基团含量的增加会引起聚集体回旋半径的增长,但不会影响其流体动力学半径。这些数据表明聚集体的疏水性核的膨胀和其高度溶胀的壳的收缩。另一方面,增加盐浓度会导致聚集体的回转率和流体动力学半径均降低,这是由于部分筛选了带相似电荷的单元之间的静电排斥力以及降低了聚集在聚集体内部的抗衡离子的渗透压。

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