Zhao Mingwei, Zhang Yue, Zou Chenwei, Dai Caili, Gao Mingwei, Li Yuyang, Lv Wenjiao, Jiang Jianfeng, Wu Yining
State Key Laboratory of Heavy Oil Processing, School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.
Materials (Basel). 2017 Sep 18;10(9):1096. doi: 10.3390/ma10091096.
There have been many reports about the thickening ability of nanoparticles on the wormlike micelles in the recent years. Through the addition of nanoparticles, the viscosity of wormlike micelles can be increased. There still exists a doubt: can viscosity be increased further by adding more nanoparticles? To answer this issue, in this work, the effects of silica nanoparticles and temperature on the nanoparticles-enhanced wormlike micellar system (NEWMS) were studied. The typical wormlike micelles (wormlike micelles) are prepared by 50 mM cetyltrimethyl ammonium bromide (CTAB) and 60 mM sodium salicylate (NaSal). The rheological results show the increase of viscoelasticity in NEWMS by adding nanoparticles, with the increase of zero-shear viscosity and relaxation time. However, with the further increase of nanoparticles, an interesting phenomenon appears. The zero-shear viscosity and relaxation time reach the maximum and begin to decrease. The results show a slight increasing trend for the contour length of wormlike micelles by adding nanoparticles, while no obvious effect on the entanglement and mesh size. In addition, with the increase of temperature, remarkable reduction of contour length and relaxation time can be observed from the calculation. NEWMS constantly retain better viscoelasticity compared with conventional wormlike micelles without silica nanoparticles. According to the Arrhenius equation, the activation energy shows the same increase trend of NEWMS. Finally, a mechanism is proposed to explain this interesting phenomenon.
近年来,已有许多关于纳米颗粒对蠕虫状胶束增稠能力的报道。通过添加纳米颗粒,可以提高蠕虫状胶束的粘度。仍然存在一个疑问:添加更多的纳米颗粒是否可以进一步提高粘度?为了回答这个问题,在这项工作中,研究了二氧化硅纳米颗粒和温度对纳米颗粒增强蠕虫状胶束体系(NEWMS)的影响。典型的蠕虫状胶束是由50 mM十六烷基三甲基溴化铵(CTAB)和60 mM水杨酸钠(NaSal)制备的。流变学结果表明,通过添加纳米颗粒,NEWMS的粘弹性增加,零剪切粘度和弛豫时间增加。然而,随着纳米颗粒的进一步增加,出现了一个有趣的现象。零剪切粘度和弛豫时间达到最大值并开始下降。结果表明,添加纳米颗粒后蠕虫状胶束的轮廓长度有轻微增加趋势,而对缠结和网孔尺寸没有明显影响。此外,随着温度的升高,从计算中可以观察到轮廓长度和弛豫时间显著降低。与没有二氧化硅纳米颗粒的传统蠕虫状胶束相比,NEWMS始终保持更好的粘弹性。根据阿伦尼乌斯方程,活化能显示出NEWMS相同的增加趋势。最后,提出了一种机制来解释这一有趣的现象。