LPMCN, Université Lyon 1 and CNRS, UMR 5586, F-69622 Villeurbanne, France.
Phys Rev Lett. 2010 Apr 2;104(13):138302. doi: 10.1103/PhysRevLett.104.138302. Epub 2010 Apr 1.
In this Letter, we characterize experimentally the diffusiophoretic motion of colloids and lambda-DNA toward higher concentration of solutes, using microfluidic technology to build spatially and temporally controlled concentration gradients. We then demonstrate that segregation and spatial patterning of the particles can be achieved from temporal variations of the solute concentration profile. This segregation takes the form of a strong trapping potential, stemming from an osmotically induced rectification mechanism of the solute time-dependent variations. Depending on the spatial and temporal symmetry of the solute signal, localization patterns with various shapes can be achieved. These results highlight the role of solute contrasts in out-of-equilibrium processes occurring in soft matter.
在这封信件中,我们通过使用微流控技术构建空间和时间可控的浓度梯度,实验性地描述了胶体和 lambda-DNA 朝着更高溶质浓度的扩散运动。然后,我们证明了可以通过溶质浓度分布的时间变化来实现粒子的分离和空间图案化。这种分离形式是一种强大的捕获势,源自溶质随时间变化的渗透压诱导整流机制。根据溶质信号的空间和时间对称性,可以实现各种形状的局域化图案。这些结果强调了溶质对比在软物质中发生的非平衡过程中的作用。