Miniaturized metachronal magnetic artificial cilia
flow generation
Miniaturization
Cell Membrane
Magnetic artificial cilia (MAC)
miniaturization
Physical Phenomena
Motion
Flow generation
Magnetic Fields
Physical Sciences
Cilia
Metachronal motion
magnetic artificial cilia (MAC)
metachronal motion
DOI:
10.1073/pnas.2304519120
Publication Date:
2023-08-23T17:35:36Z
AUTHORS (5)
ABSTRACT
Biological cilia, hairlike organelles on cell surfaces, often exhibit collective wavelike motion known as metachrony, which helps generating fluid flow. Inspired by nature, researchers have developed artificial cilia as microfluidic actuators, exploring several methods to mimic the metachrony. However, reported methods are difficult to miniaturize because they require either control of individual cilia properties or the generation of a complex external magnetic field. We introduce a concept that generates metachronal motion of magnetic artificial cilia (MAC), even though the MAC are all identical, and the applied external magnetic field is uniform. This is achieved by integrating a paramagnetic substructure in the substrate underneath the MAC. Uniquely, we can create both symplectic and antiplectic metachrony by changing the relative positions of MAC and substructure. We demonstrate the flow generation of the two metachronal motions in both high and low Reynolds number conditions. Our research marks a significant milestone by breaking the size limitation barrier in metachronal artificial cilia. This achievement not only showcases the potential of nature-inspired engineering but also opens up a host of exciting opportunities for designing and optimizing microsystems with enhanced fluid manipulation capabilities.
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