Nanoacoustic fields are a promising method for particle actuation at the nanoscale, though THz frequencies are typically required to create nanoscale wavelengths. In this work, the generation of robust nanoscale force gradients is demonstrated using MHz driving frequencies via acoustic‐structure interactions. A structured elastic layer at the interface between a microfluidic channel and a traveling surface acoustic wave (SAW) device results in submicron acoustic traps, each of which can trap individual submicron particles. The acoustically driven deformation of nanocavities gives rise to time‐averaged acoustic fields which direct suspended particles toward, and trap them within, the nanocavities. The use of SAWs permits massively multiplexe...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
We demonstrate the trapping of elastic particles by the large gradient force of a single acoustical ...
International audienceManipulating micro and nano-biological particles like extracellular vehicles (...
International audienceManipulating micro and nano-biological particles like extracellular vehicles (...
Ultrafast particle and cell concentration is essential to the success of subsequent analytical proce...
There has been considerable interest in the noninvasive manipulation of particles in dispersions dur...
Separation of particles on the order of 100 nm with acoustophoresis has been challenging to date bec...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Concentration and separation of particles and biological specimens are fundamental functions of micr...
Surface acoustic wave (SAW) devices have become popular as a practical and effective tool for fluid ...
We demonstrate the trapping of elastic particles by the large gradient force of a single acoustical ...
International audienceManipulating micro and nano-biological particles like extracellular vehicles (...
International audienceManipulating micro and nano-biological particles like extracellular vehicles (...
Ultrafast particle and cell concentration is essential to the success of subsequent analytical proce...
There has been considerable interest in the noninvasive manipulation of particles in dispersions dur...
Separation of particles on the order of 100 nm with acoustophoresis has been challenging to date bec...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...