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Electrokinetic Janus micromotors moving on topographically flat chemical patterns

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arxiv 2209.05306 v1 pith:K2FGR77Q submitted 2022-09-12 cond-mat.soft cond-mat.mtrl-sciphysics.bio-ph

classification cond-mat.softcond-mat.mtrl-sciphysics.bio-ph
keywords chargedelectrokineticioniccomplexelectrostaticincludingjanusmicromotors
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Ionic and molecular selectivity is considered unique for the nanoscale and not realizable in microfluidics. This is due to the scale-matching problem -- a difficulty to match the dimensions of ions and electrostatic potential screening lengths with the micron-sized confinements. Here, we demonstrate a microscale realization of the ionic transport processes closely resembling those specific to ionic channels or in nanofluidic junctions, including selectivity, guidance through complex geometries and flow focusing. As a model system, we explore electrokinetic spherical Janus micromotors moving over charged surfaces with a complex spatial charge distribution and without any topographical wall. We discuss peculiarities of the long-range electrostatic interaction on the behavior of the system including interface crossing and reflection of positively charged particles from negatively charged interfaces. These results are crucial for understanding the electrokinetic transport of biochemical species under confinement, have the potential to increase the precision of lab-on-chip-based assays, as well as broadening use cases and control strategies of nano-/micromachinery.

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