Published October 25, 2025 | Version v1
Journal article Open

Acoustic Nanoparticle Trapping Is Driven by Synergy between Acoustic and Hydrodynamic Interactions

Description

Acoustic forces occurring in resonant microfluidic chambers allow the handling of micrometer-sized particles. Trapping of nanoparticles has been shown for high particle concentrations and after preseeding the chamber with larger particles. We show that the trapping mechanism is due to synergy between hydrodynamic shielding and acoustic forces. Acoustic interactions are significant only when seed particles are involved and are negligible when trapping monodisperse particles. Density-selective nanoparticle trapping is suggested based on the numerical results.

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Additional details

Funding

European Commission
SONOCRAFT - High-throughput ultrasound-based volumetric 3D printing for tissue engineering 101187842

Dates

Accepted
2025-09-25