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Analysis of gelatin chain aggregation in dilute aqueous solutions through viscosity data

机译:通过粘度数据分析稀水溶液中的明胶链聚集

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Viscosity data of gelatin solutions with concentrations between 10~(-5) and 10~(-3) g/cm~3 are studied in a horizontal capillary viscometer for a wide range of shear rates, covering the dilute and very dilute zones, where either intermolecular aggregation and intramolecular folding are possible, respectively, and the sol-gel transition is not observed. It is found that the dilute solutions behave as Newtonian fluids for the range of shear rates studied. Intrinsic viscosity values revealed that the maturation temperature has a relevant influence on the type of chain aggregations forming thermo-reversible clusters. The use of potassium thiocyanate and urea partially inhibited cluster formations. On the contrary, the aggregation process was not modified with the addition of surfactant sodium dodecylsulphate, indicating that hydrophobic interactions were not the cause of this phenomenon. The evolution of cluster formations in the dilute zone was analyzed through Smoluchowski aggregation theory and the aggregate-size distribution function was evaluated allowing one to conclude that it tends to be Gaussian and high polydisperse as the maturation time increases. Calculations show that disordered aggregates with high amount of occluded solvent are formed at low temperatures, while for higher temperatures, more compact structures are attained. Through the evaluation of the colloidal stability ratio, it is shown that the aggregation process is very slow in the dilute zone with an energetic barrier of around 25 times the Brownian thermal energy, and that the possibility of significant aggregation in the very dilute zone must be excluded.
机译:在卧式毛细管粘度计中,研究了浓度范围在10〜(-5)和10〜(-3)g / cm〜3之间的明胶溶液的粘度数据,其剪切速率范围很广,涵盖了稀薄和非常稀薄的区域,其中分子间聚集和分子内折叠分别是可能的,并且未观察到溶胶-凝胶转变。发现在所研究的剪切速率范围内,稀溶液表现为牛顿流体。固有粘度值表明,成熟温度对形成热可逆簇的链聚集体的类型具有相关影响。硫氰酸钾和尿素的使用部分抑制了簇的形成。相反,未通过添加表面活性剂十二烷基硫酸钠来改变聚集过程,这表明疏水相互作用不是此现象的原因。通过Smoluchowski聚集理论分析了稀薄区中团簇的形成,并评估了聚集体的大小分布函数,从而得出结论:随着成熟时间的增加,聚集体趋向于高斯分布和高分散性。计算表明,在低温下会形成带有大量被吸留溶剂的无序聚集体,而在较高温度下,可获得更紧凑的结构。通过对胶体稳定性比的评估,可以看出,在稀薄区的聚集过程非常缓慢,其能量势垒约为布朗热能的25倍,并且在稀薄区中发生明显聚集的可能性必须是排除在外。

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