Department of Mechanical Engineering, Clemson University, Clemson, South Carolina, USA.
College of Marine Engineering, Dalian Maritime University, Dalian, P. R. China.
Electrophoresis. 2022 Mar;43(5-6):717-723. doi: 10.1002/elps.202100270. Epub 2021 Nov 21.
Recent studies have demonstrated the strong influences of fluid rheological properties on insulator-based dielectrophoresis (iDEP) in single-constriction microchannels. However, it is yet to be understood how iDEP in non-Newtonian fluids depends on the geometry of insulating structures. We report in this work an experimental study of fluid rheological effects on streaming DEP in a post-array microchannel that presents multiple contractions and expansions. The iDEP focusing and trapping of particles in a viscoelastic polyethylene oxide solution are comparable to those in a Newtonian buffer, which is consistent with the observations in a single-constriction microchannel. Similarly, the insignificant iDEP effects in a shear-thinning xanthan gum solution also agree with those in the single-constriction channel except that gel-like structures are observed to only form in the post-array microchannel under large DC electric fields. In contrast, the iDEP effects in both viscoelastic and shear-thinning polyacrylamide solution are significantly weaker than in the single-constriction channel. Moreover, instabilities occur in the electroosmotic flow and appear to be only dependent on the DC electric field. These phenomena may be associated with the dynamics of polymers as they are electrokinetically advected around and through the posts.
最近的研究表明,在单收缩微通道中,流体流变性能对基于绝缘体的介电泳(iDEP)有很强的影响。然而,目前尚不清楚非牛顿流体中的 iDEP 如何依赖于绝缘结构的几何形状。我们在这项工作中报告了在具有多个收缩和扩张的后置阵列微通道中,流体流变效应对流动 DEP 的实验研究。在粘弹性聚乙烯氧化物溶液中,iDEP 对粒子的聚焦和捕获与牛顿缓冲液中的情况相当,这与单收缩微通道中的观察结果一致。同样,在剪切稀化黄原胶溶液中,iDEP 的影响不明显,这也与单收缩通道中的情况一致,只是在大直流电场下观察到仅在后置阵列微通道中形成凝胶状结构。相比之下,在粘弹性和剪切稀化聚丙烯酰胺溶液中的 iDEP 影响明显弱于单收缩通道。此外,在电渗流中出现不稳定性,似乎仅取决于直流电场。这些现象可能与聚合物的动力学有关,因为它们在电场中被电泳输送到和通过柱子周围。