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Effects of Ionic Strength on Lateral Particle Migration in Shear-Thinning Xanthan Gum Solutions

机译:剪切稀黄原胶溶液中离子强度对侧向颗粒迁移的影响

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摘要

Viscoelastic fluids, including particulate systems, are found in various biological and industrial systems including blood flow, food, cosmetics, and electronic materials. Particles suspended in viscoelastic fluids such as polymer solutions migrate laterally, forming spatially segregated streams in pressure-driven flow. Viscoelastic particle migration was recently applied to microfluidic technologies including particle counting and sorting and the micromechanical measurement of living cells. Understanding the effects on equilibrium particle positions of rheological properties of suspending viscoelastic fluid is essential for designing microfluidic applications. It has been considered that the shear-thinning behavior of viscoelastic fluid is a critical factor in determining the equilibrium particle positions. This work presents the lateral particle migration in two different xanthan gum-based viscoelastic fluids with similar shear-thinning viscosities and the linear viscoelastic properties. The flexibility and contour length of the xanthan gum molecules were tuned by varying the ionic strength of the solvent. Particles suspended in flexible and short xanthan gum solution, dissolved at high ionic strength, migrated toward the corners in a square channel, whereas particles in the rigid and long xanthan gum solutions in deionized water migrated toward the centerline. This work suggests that the structural properties of polymer molecules play significant roles in determining the equilibrium positions in shear-thinning fluids, despite similar bulk rheological properties. The current results are expected to be used in a wide range of applications such as cell counting and sorting.
机译:包括颗粒系统在内的粘弹性流体存在于各种生物和工业系统中,包括血流,食品,化妆品和电子材料。悬浮在粘弹性流体(例如聚合物溶液)中的颗粒横向移动,在压力驱动的流动中形成空间隔离的流。粘弹性颗粒迁移最近已应用于微流体技术,包括颗粒计数和分选以及活细胞的微机械测量。理解悬浮粘弹性流体的流变性对平衡颗粒位置的影响对于设计微流体应用至关重要。已经认为粘弹性流体的剪切稀化行为是确定平衡颗粒位置的关键因素。这项工作提出了在两种具有相似的剪切稀化粘度和线性粘弹性的不同黄原胶基粘弹性流体中的横向颗粒迁移。通过改变溶剂的离子强度来调节黄原胶分子的柔韧性和轮廓长度。悬浮在柔软而短的黄原胶溶液中的颗粒,以高离子强度溶解,在方形通道中移向角落,而在去离子水中的硬质和长黄原胶溶液中的颗粒移向中心线。这项工作表明,尽管具有相似的本体流变学性质,但聚合物分子的结构性质在确定剪切稀化流体中的平衡位置方面起着重要作用。当前的结果有望用于细胞计数和分选等广泛的应用中。

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