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Enhanced rheological properties and performance of viscoelastic surfactant fluids with embedded nanoparticles

机译:用嵌入式纳米粒子增强粘弹性表面活性剂流体的流变性能和性能

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摘要

A combination of viscoelastic surfactants with nanoparticles gives a new class of functional self-assembled materials promising for a large variety of applications. Nanoparticles improve the rheological properties of these systems because of the incorporation into the network of entangled wormlike micelles by linking to micellar end-caps, thus leading to elongation or cross-linking of the micelles. The present article reviews recent studies of these hybrid systems. Mechanisms of the interaction of nanoparticles with wormlike surfactant micelles as well as factors favoring the enhancement of rheological properties of viscoelastic surfactants by added nanoparticles are discussed, providing ways for proper design of such systems in the future. It is shown that viscoelastic surfactants modified with nanoparticles display very attractive features for practical applications, in particular, for fracturing fluids in oil recovery.
机译:纳米颗粒的粘弹性表面活性剂的组合给出了一类新的功能性自组装材料,适用于各种应用。 纳米粒子通过将叶片末端盖连接到缠绕的蜗杆胶束网络中,提高了这些系统的流变性质,从而导致胶束的伸长或交联。 本文综述了这些混合系统的最近研究。 探讨了纳米颗粒与蠕虫表面活性剂胶束相互作用的机制以及添加纳米颗粒的粘弹性表面活性剂的增强的因素,为未来提供了适当设计的方法。 结果表明,用纳米颗粒改性的粘弹性表面活性剂显示出对实际应用的非常有吸引力的特征,特别是用于油回收中的压裂液。

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