黄原胶
流变学
流变仪
粘度
纳米颗粒
化学工程
Zeta电位
聚合物
相对粘度
纳米流体
水动力半径
材料科学
动态光散射
表观粘度
色散(光学)
还原粘度
特性粘度
纳米技术
复合材料
工程类
物理
光学
作者
Dayan L. Buitrago-Rincon,Véronique Sadtler,Ronald Mercado,Thibault Roques‐Carmes,Lazhar Benyahia,Alain Durand,Khalid Ferji,Philippe Marchal,J.A. Pedraza-Avella,Cécile Lemaître
出处
期刊:Nanomaterials
[MDPI AG]
日期:2022-06-02
卷期号:12 (11): 1906-1906
被引量:4
摘要
The effect of silica nanoparticles (NP-SiO2) in xanthan gum (XG) solutions was investigated through the analysis of viscosity profiles. First, hydrocolloid XG solutions and hydrophilic NP-SiO2 suspensions were characterized individually through rheological measurements, with and without salt (NaCl). Then, nanofluids composed of XG and NP-SiO2 dispersed in water and brine were studied through two different aging tests. The addition of nanoparticles was shown to produce a slight effect on the viscosity of the fresh fluids (initial time), while a more remarkable effect was observed over time. In particular, it appears that the presence of NP-SiO2 stabilizes the polymer solution by maintaining its viscosity level in time, due to a delay in the movement of the molecule. Finally, characterization techniques such as confocal microscopy, capillary rheometry, and Zeta potential were implemented to analyze the XG/NP-SiO2 interaction. Intrinsic viscosity and relative viscosity were calculated to understand the molecular interactions. The presence of NP-SiO2 increases the hydrodynamic radius of the polymer, indicating attractive forces between these two components. Furthermore, dispersion of the nanoparticles in the polymeric solutions leads to aggregates of an average size smaller than 300 nm with a good colloidal stability due to the electrostatic attraction between XG and NP-SIO2. This study proves the existence of interactions between XG and NP-SiO2 in solution.
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